Crystallography Open Database

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1509247 CIFC20 H24 Cl F18 I2 K O6C 1 2/c 128.8921; 9.781; 12.2102
90; 105.762; 90
3320.8Jentzsch, Andreas Vargas; Emery, Daniel; Mareda, Jiri; Nayak, Susanta K; Metrangolo, Pierangelo; Resnati, Giuseppe; Sakai, Naomi; Matile, Stefan
Transmembrane anion transport mediated by halogen-bond donors.
Nature communications, 2012, 3, 905
1509248 CIFC18 H24 F14 I3 K O6C 1 2/c 127.7056; 9.6249; 12.2412
90; 101.759; 90
3195.8Jentzsch, Andreas Vargas; Emery, Daniel; Mareda, Jiri; Nayak, Susanta K; Metrangolo, Pierangelo; Resnati, Giuseppe; Sakai, Naomi; Matile, Stefan
Transmembrane anion transport mediated by halogen-bond donors.
Nature Communications, 2012, 3, 905
1509249 CIFC12 H28 Cl K O8P 1 21/m 19.782; 14.983; 12.1152
90; 92.886; 90
1773.4Jentzsch, Andreas Vargas; Emery, Daniel; Mareda, Jiri; Nayak, Susanta K; Metrangolo, Pierangelo; Resnati, Giuseppe; Sakai, Naomi; Matile, Stefan
Transmembrane anion transport mediated by halogen-bond donors.
Nature Communications, 2012, 3, 905
1513791 CIFC70 H66 Cl6 O4 Os P3 SP 1 21/c 123.9712; 10.7966; 25.4621
90; 95.78; 90
6556.3Zhu, Congqing; Luo, Ming; Zhu, Qin; Zhu, Jun; Schleyer, Paul V. R.; Wu, Judy I-Chia; Lu, Xin; Xia, Haiping
Planar Möbius aromatic pentalenes incorporating 16 and 18 valence electron osmiums.
Nature communications, 2014, 5, 3265
1513792 CIFC64.5 H57 Al2 Cl12 O3 Os P3P 1 21/n 118.4337; 19.2879; 20.2958
90; 97.813; 90
7149.1Zhu, Congqing; Luo, Ming; Zhu, Qin; Zhu, Jun; Schleyer, Paul V. R.; Wu, Judy I-Chia; Lu, Xin; Xia, Haiping
Planar Möbius aromatic pentalenes incorporating 16 and 18 valence electron osmiums.
Nature communications, 2014, 5, 3265
1513793 CIFC66 H58 Cl3 O5 Os P3P 1 21/c 112.6439; 21.0196; 21.9093
90; 96.0021; 90
5790.91Zhu, Congqing; Luo, Ming; Zhu, Qin; Zhu, Jun; Schleyer, Paul V. R.; Wu, Judy I-Chia; Lu, Xin; Xia, Haiping
Planar Möbius aromatic pentalenes incorporating 16 and 18 valence electron osmiums.
Nature communications, 2014, 5, 3265
1513794 CIFC21 H29 F5 Si3P b c a11.6307; 12.5277; 33.4761
90; 90; 90
4877.7Inagaki, Yusuke; Nakamoto, Masaaki; Sekiguchi, Akira
A Diels-Alder super diene breaking benzene into C2H2 and C4H4 units.
Nature communications, 2014, 5, 3018
1513795 CIFC21 H31 F5 Si3P b c a11.6585; 12.5084; 33.328
90; 90; 90
4860.2Inagaki, Yusuke; Nakamoto, Masaaki; Sekiguchi, Akira
A Diels-Alder super diene breaking benzene into C2H2 and C4H4 units.
Nature communications, 2014, 5, 3018
1513796 CIFC21 H29 F5 Si3P c a 2119.1914; 10.6017; 23.3513
90; 90; 90
4751.1Inagaki, Yusuke; Nakamoto, Masaaki; Sekiguchi, Akira
A Diels-Alder super diene breaking benzene into C2H2 and C4H4 units.
Nature communications, 2014, 5, 3018
1513797 CIFC25 H33 F5 Si3P -19.6564; 11.3871; 12.9349
72.1; 81.25; 79.77
1324.69Inagaki, Yusuke; Nakamoto, Masaaki; Sekiguchi, Akira
A Diels-Alder super diene breaking benzene into C2H2 and C4H4 units.
Nature communications, 2014, 5, 3018
1513798 CIFC11 H15 N5 O7P 1 21 15.6548; 27.587; 8.526
90; 95.291; 90
1324.4Zhao, Hang; Guo, Xiurong; He, Shiliang; Zeng, Xin; Zhou, Xinglong; Zhang, Chaoliang; Hu, Jing; Wu, Xiaohua; Xing, Zhihua; Chu, Liangyin; He, Yang; Chen, Qianming
Complex self-assembly of pyrimido[4,5-d]pyrimidine nucleoside supramolecular structures.
Nature communications, 2014, 5, 3108
1513799 CIFC11 H13 N5 O5P 14.9116; 8.8528; 13.96
105.332; 93.529; 91.847
583.54Zhao, Hang; Guo, Xiurong; He, Shiliang; Zeng, Xin; Zhou, Xinglong; Zhang, Chaoliang; Hu, Jing; Wu, Xiaohua; Xing, Zhihua; Chu, Liangyin; He, Yang; Chen, Qianming
Complex self-assembly of pyrimido[4,5-d]pyrimidine nucleoside supramolecular structures.
Nature communications, 2014, 5, 3108
1546291 CIFAl0.024 Na0.015 O4 Si1.978I 41/a13.7002; 13.7002; 19.4438
90; 90; 90
3649.51Momma, K.; Ikeda, T.; Nishikubo, K.; Takahashi, N.; Honma, C.; Takada, M.; Furukawa, Y.; Nagase, T.; Kudoh, Y.
New silica clathrate minerals that are isostructural with natural gas hydrates
Nature Communications, 2011, 2, 1-7
1547320 CIFC26 H22 Cu N4 O6 SeP 1 21/c 117.934; 36.37; 13.179
90; 120.82; 90
7382Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547321 CIFC26 H22 Cu N4 O6 SeC 1 2/c 117.86; 12.16; 13.17
90; 120.79; 90
2457Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547322 CIFC4.73 H4 Cu0.18 N0.73 O1.09 Se0.18C 1 2/c 117.924; 12.236; 13.253
90; 120.69; 90
2500Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547323 CIFC27 H24 Cu N4 O6 SeC 1 c 117.434; 13.149; 13.184
90; 123.634; 90
2516Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547324 CIFC27 H24 Cu N4 O6 SeC 1 c 117.58; 13.218; 13.269
90; 123.34; 90
2576Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547326 CIFC27 H24 Cu N4 O6 SeC 1 c 117.515; 13.237; 13.262
90; 123.415; 90
2566Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547328 CIFC27 H24 Cu N4 O6 SeC 1 c 117.582; 13.248; 13.324
90; 123.38; 90
2592Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547329 CIFC27 H24 Cu N4 O6 SeC 1 c 117.723; 12.711; 13.471
90; 123.186; 90
2540Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547330 CIFC27 H24 Cu N4 O6 SeC 1 2/c 117.794; 12.662; 13.644
90; 123.19; 90
2573Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547331 CIFC27 H24 Cu N4 O6 SeC 1 c 117.551; 13.247; 13.266
90; 123.367; 90
2576Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547332 CIFC18 H16 Cu0.67 N2.67 O4 Se0.67C 1 c 117.551; 13.239; 13.305
90; 123.3; 90
2584Heng-Yun Ye; Wei-Qiang Liao; Qionghua Zhou; Yi Zhang; Jinlan Wang; Yu-Meng You; Jin-Yun Wang; Zhong-Ning Chen; Peng-Fei Li; Da-Wei Fu; Songping D. Huang; and Ren-Gen Xiong
Dielectric and ferroelectric sensing based on molecular recognition in Cu(1,10-phenlothroline)2SeO4.(diol) systems
Nature Communications, 2017, 8, 14551
1547478 CIFC9 H18 Fe2 N5 O3 S2P b c a14.24; 14.263; 14.821
90; 90; 90
3010Hsieh, Chung-Hung; Ding, Shengda; Erdem, Ozlen F.; Crouthers, Danielle J.; Liu, Tianbiao; McCrory, Charles C. L.; Lubitz, Wolfgang; Popescu, Codrina V.; Reibenspies, Joseph H.; Hall, Michael B.; Darenbourg, Marcetta Y.
Redox active iron nitrosyl units in proton reduction electrocatalysis
Nature Communications, 2014, 5, 3684
1547688 CIFC25 H16 F6 O13 P4 Zr2.69P b c a23.9163; 13.5859; 26.106
90; 90; 90
8482.5Tao Zheng; Zaixing Yang; Daxiang Gui; Zhiyong Liu; Xiangxiang Wang; Xing Dai; Shengtang Liu; Linjuan Zhang; Yang Gao; Lanhua Chen; Daopeng Sheng; Yanlong Wang; Juan Diwu; Jianqiang Wang; Ruhong Zhou; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wanga
Overcoming the crystallization and designability issues in the ultrastable zirconium phosphonate framework system
Nature Communications, 2017, 8, 15369
1547689 CIFC25 H16 F8 O12 P4 Zr3I 4/m33.081; 33.081; 15.832
90; 90; 90
17326Tao Zheng; Zaixing Yang; Daxiang Gui; Zhiyong Liu; Xiangxiang Wang; Xing Dai; Shengtang Liu; Linjuan Zhang; Yang Gao; Lanhua Chen; Daopeng Sheng; Yanlong Wang; Juan Diwu; Jianqiang Wang; Ruhong Zhou; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wanga
Overcoming the crystallization and designability issues in the ultrastable zirconium phosphonate framework system
Nature Communications, 2017, 8, 15369
1547690 CIFC68 H48 F18 O24 P8 Zr7P 1 21/n 116.9609; 26.425; 16.9629
90; 117.718; 90
6730.2Tao Zheng; Zaixing Yang; Daxiang Gui; Zhiyong Liu; Xiangxiang Wang; Xing Dai; Shengtang Liu; Linjuan Zhang; Yang Gao; Lanhua Chen; Daopeng Sheng; Yanlong Wang; Juan Diwu; Jianqiang Wang; Ruhong Zhou; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wanga
Overcoming the crystallization and designability issues in the ultrastable zirconium phosphonate framework system
Nature Communications, 2017, 8, 15369
1547691 CIFC41 O14 P4I 41/a24.905; 24.905; 7.5896
90; 90; 90
4707.5Tao Zheng; Zaixing Yang; Daxiang Gui; Zhiyong Liu; Xiangxiang Wang; Xing Dai; Shengtang Liu; Linjuan Zhang; Yang Gao; Lanhua Chen; Daopeng Sheng; Yanlong Wang; Juan Diwu; Jianqiang Wang; Ruhong Zhou; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wanga
Overcoming the crystallization and designability issues in the ultrastable zirconium phosphonate framework system
Nature Communications, 2017, 8, 15369
1547692 CIFC25 H24 O12 P4I -413.2646; 13.2646; 7.5238
90; 90; 90
1323.81Tao Zheng; Zaixing Yang; Daxiang Gui; Zhiyong Liu; Xiangxiang Wang; Xing Dai; Shengtang Liu; Linjuan Zhang; Yang Gao; Lanhua Chen; Daopeng Sheng; Yanlong Wang; Juan Diwu; Jianqiang Wang; Ruhong Zhou; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wanga
Overcoming the crystallization and designability issues in the ultrastable zirconium phosphonate framework system
Nature Communications, 2017, 8, 15369
1547693 CIFC212 H181 N8 O34 Pd2 S16P 1 21/n 121.7593; 33.6872; 28.3246
90; 92.856; 90
20736.4Sho Matsuno; Masahiro Yamashina; Yoshihisa Sei; Munetaka Akita; Akiyoshi Kuzume; Kimihisa Yamamoto; Michito Yoshizawa
Exact mass analysis of sulfur clusters upon encapsulation by a polyaromatic capsular matrix
Nature Communications, 2017, 8, 749
1547694 CIFC212 H184 N12 O46 Pd2 S12P -121.297; 21.48; 27.276
70.017; 69.062; 61.468
10013.5Sho Matsuno; Masahiro Yamashina; Yoshihisa Sei; Munetaka Akita; Akiyoshi Kuzume; Kimihisa Yamamoto; Michito Yoshizawa
Exact mass analysis of sulfur clusters upon encapsulation by a polyaromatic capsular matrix
Nature Communications, 2017, 8, 749
1547708 CIFC7 H14 I N O4P m n 219.099; 6.059; 9.24
90; 90; 90
509.4Yu-Meng You; Yuan-Yuan Tang; Peng-Fei Li; Han-Yue Zhang; Wan-Ying Zhang; Yi Zhang; Heng-Yun Ye; Takayoshi Nakamura; Ren-Gen Xiong
Quinuclidinium salt ferroelectric thin-film with duodecuple-rotational polarization-directions
Nature Communications, 2017, 8, 14934
1547709 CIFC7 H14 I N O4P m -3 m6.437; 6.437; 6.437
90; 90; 90
266.7Yu-Meng You; Yuan-Yuan Tang; Peng-Fei Li; Han-Yue Zhang; Wan-Ying Zhang; Yi Zhang; Heng-Yun Ye; Takayoshi Nakamura; Ren-Gen Xiong
Quinuclidinium salt ferroelectric thin-film with duodecuple-rotational polarization-directions
Nature Communications, 2017, 8, 14934
1547718 CIFC120 H125 N17 O31 Zn4C 1 2 125.016; 9.6759; 27.415
90; 116.342; 90
5946.8Zhengqiang Xia; Cheng He; Xiaoge Wang; Chunying Duan
Modifying electron transfer between photoredox and organocatalytic units via framework interpenetration for beta-carbonyl functionalization
Nature Communications, 2017, 8, 361
1547719 CIFC120 H125 N17 O31 Zn4C 1 2 125.0155; 9.6927; 27.3884
90; 116.251; 90
5955.9Zhengqiang Xia; Cheng He; Xiaoge Wang; Chunying Duan
Modifying electron transfer between photoredox and organocatalytic units via framework interpenetration for beta-carbonyl functionalization
Nature Communications, 2017, 8, 361
1547720 CIFC115 H115 N13 O29 Zn4C 1 2/c 125.9658; 9.0558; 27.369
90; 117.686; 90
5698.7Zhengqiang Xia; Cheng He; Xiaoge Wang; Chunying Duan
Modifying electron transfer between photoredox and organocatalytic units via framework interpenetration for beta-carbonyl functionalization
Nature Communications, 2017, 8, 361
1547721 CIFC125 H134 N16 O33 Zn4C 1 2 124.9168; 9.6298; 27.373
90; 116.294; 90
5888.4Zhengqiang Xia; Cheng He; Xiaoge Wang; Chunying Duan
Modifying electron transfer between photoredox and organocatalytic units via framework interpenetration for beta-carbonyl functionalization
Nature Communications, 2017, 8, 361
1547722 CIFC128 H140 N16 O32 Zn4C 1 2 124.9012; 9.6416; 27.3223
90; 116.379; 90
5876.7Zhengqiang Xia; Cheng He; Xiaoge Wang; Chunying Duan
Modifying electron transfer between photoredox and organocatalytic units via framework interpenetration for beta-carbonyl functionalization
Nature Communications, 2017, 8, 361
1547723 CIFC30 H18C 1 2/c 138.0759; 12.6702; 7.9552
90; 101.488; 90
3760.9Akitoshi Shiotari; Takahiro Nakae; Kota Iwata; Shigeki Mori; Tetsuo Okujima; Hidemitsu Uno; Hiroshi Sakaguchi; Yoshiaki Sugimoto
Strain-induced skeletal rearrangement of a polycyclic aromatic hydrocarbon on a copper surface
Nature Communications, 2017, 8, 16089
1547724 CIFC30 H18C 1 2/c 137.63; 6.3613; 16.724
90; 111.123; 90
3734Akitoshi Shiotari; Takahiro Nakae; Kota Iwata; Shigeki Mori; Tetsuo Okujima; Hidemitsu Uno; Hiroshi Sakaguchi; Yoshiaki Sugimoto
Strain-induced skeletal rearrangement of a polycyclic aromatic hydrocarbon on a copper surface
Nature Communications, 2017, 8, 16089
1547743 CIFC30 H18 N4 NiP 1 21/c 113.642; 11.1624; 21.3653
90; 95.271; 90
3239.7Ryo Nozawa; Hiroko Tanaka; Won-Young Cha; Yongseok Hong; Ichiro Hisaki; Soji Shimizu; Ji-Young Shin; Tim Kowalczyk; Stephan Irle; Dongho Kim; Hiroshi Shinokubo
Stacked antiaromatic porphyrins
Nature Communications, 2016, 7, 13620
1547744 CIFC66 H42 Cl6 N8 Ni2 S2C 1 2/c 124.768; 13.8476; 33.0065
90; 99.5763; 90
11162.7Ryo Nozawa; Hiroko Tanaka; Won-Young Cha; Yongseok Hong; Ichiro Hisaki; Soji Shimizu; Ji-Young Shin; Tim Kowalczyk; Stephan Irle; Dongho Kim; Hiroshi Shinokubo
Stacked antiaromatic porphyrins
Nature Communications, 2016, 7, 13620
1547745 CIFC43 H54 F6 Fe N O8 PP -110.3437; 11.1763; 19.446
87.24; 79.489; 88.855
2207.6Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547746 CIFC43 H54 F6 Fe N O8 PP -110.343; 11.1816; 19.4313
87.281; 79.707; 88.818
2208.4Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547747 CIFC43 H54 F6 Fe N O8 PP -110.3504; 11.1958; 19.4394
87.289; 79.822; 88.798
2214.5Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547748 CIFC43 H54 F6 Fe N O8 PP -110.3258; 11.1596; 19.3998
87.2796; 79.5728; 88.8537
2195.93Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547749 CIFC43 H54 F6 Fe N O8 PP -110.3579; 11.21; 19.4479
87.293; 79.94; 88.772
2220.7Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547750 CIFC43 H54 F6 Fe N O8 PP -110.3393; 11.1764; 19.3966
87.3043; 79.8391; 88.8264
2203.63Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547751 CIFC43 H54 F6 Fe N O8 PP -110.3662; 11.2263; 19.458
87.294; 80.055; 88.745
2227.7Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547752 CIFC43 H54 F6 Fe N O8 PP -110.3758; 11.2462; 19.467
87.299; 80.198; 88.715
2235.7Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547753 CIFC43 H54 F6 Fe N O8 PP -110.3528; 11.195; 19.3916
87.3094; 80.1334; 88.7511
2211.58Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547754 CIFC43 H54 F6 Fe N O8 PP -110.3815; 11.262; 19.473
87.298; 80.314; 88.684
2241.5Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547755 CIFC43 H54 F6 Fe N O8 PP -110.3843; 11.2809; 19.3678
87.3201; 81.11; 88.5831
2238.8Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547756 CIFC43 H54 F6 Fe N O8 PP -110.391; 11.288; 19.483
87.29; 80.485; 88.65
2251Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547757 CIFC43 H54 F6 Fe N O8 PP -110.3641; 11.2179; 19.3874
87.325; 80.4216; 88.7095
2219.95Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547758 CIFC43 H54 F6 Fe N O8 PP -110.3728; 11.2401; 19.3827
87.3342; 80.6721; 88.6789
2227.3Kai-Jen Chen; Ya-Ching Tsai; Yuji Suzaki; Kohtaro Osakada; Atsushi Miura; Masaki Horie
Rapid and reversible photoinduced switching of a rotaxane crystal
Nature Communications, 2016, 7, 13321
1547759 CIFCu0.25 Te0.1667P m -3 n7.51; 7.51; 7.51
90; 90; 90
423.565Tom Willhammar; Kadir Sentosun; Stefanos Mourdikoudis; Bart Goris; Mert Kurttepeli; Marnik Bercx; Dirk Lamoen; Bart Partoens; Isabel Pastoriza-Santos; Jorge Perez-Juste; Luis M. Liz-Marzan; Sara Bals; Gustaaf Van Tendeloo
Structure and vacancy distribution in copper telluride nanoparticles influence plasmonic activity in the near-infrared
Nature Communications, 2017, 8, 14925
1547886 CIFC92 H173 Cu4 N9 O49 S6P 4/m n c18.6841; 18.6841; 34.6796
90; 90; 90
12106.5Florian Moreau; Ivan da Silva; Nada H. Al Smail; Timothy L. Easun; Mathew Savage; Harry G. W. Godfrey; Stewart F. Parker; Pascal Manuel; Sihai Yang; Martin Schroder
Unravelling exceptional acetylene and carbon dioxide adsorption within a tetra-amide functionalized metal-organic framework
Nature Communications, 2017, 8, 14085
1547887 CIFC24 H11 Cu2 N2 O10P 4/m n c18.7721; 18.7721; 34.7704
90; 90; 90
12252.8Florian Moreau; Ivan da Silva; Nada H. Al Smail; Timothy L. Easun; Mathew Savage; Harry G. W. Godfrey; Stewart F. Parker; Pascal Manuel; Sihai Yang; Martin Schroder
Unravelling exceptional acetylene and carbon dioxide adsorption within a tetra-amide functionalized metal-organic framework
Nature Communications, 2017, 8, 14085
1547888 CIFB4 Cl La O8C 1 c 16.5268; 11.251; 9.814
90; 105.271; 90
695.2Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547889 CIFB12 Cl2 Nd2 O29P 1 21/n 18.1867; 14.5421; 9.8317
90; 90.281; 90
1170.47Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547890 CIFB7 O17 SmC 1 2/m 18.7754; 27.454; 6.8312
90; 127.524; 90
1305.3Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547891 CIFB7 Eu O16P -16.8148; 7.1444; 12.7191
96.093; 98.513; 101.75
593.64Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547892 CIFB24 Lu4 O49R -3 :H17.0783; 17.0783; 20.3077
90; 90; 120
5129.6Xuemiao Yin; Yaxing Wang; Xiaojing Bai; Yumin Wang; Lanhua Chen; Chengliang Xiao; Juan Diwu; Shiyu Du; Zhifang Chai; Thomas E. Albrecht-Schmitt; Shuao Wang
Rare earth separations by selective borate crystallization
Nature Communications, 2017, 8, 14438
1547893 CIFC41 H72.5 N7 O13.25P 111.0081; 11.0439; 20.174
81.37; 78.531; 80.367
2352.4Sudipta Mondal; Maxim Varenik; Daniel Nir Bloch; Yoav Atsmon-Raz; Guy Jacoby; Lihi Adler-Abramovich; Linda J.W. Shimon; Roy Beck; Yifat Miller; Oren Regev; Ehud Gazit
A minimal length rigid helical peptide motif allows rational design of modular surfactants
Nature Communications, 2017, 8, 14018
1547894 CIFC208 H168 Cu24 O144 S8I 4/m28.535; 28.535; 39.508
90; 90; 90
32169Jiyoung Lee; Ja Hun Kwak; Wonyoung Choe
Evolution of form in metal–organic frameworks
Nature Communications, 2017, 8, 14070
1547895 CIFC228 H192 Cu24 N12 O132F m -3 m39.878; 39.878; 39.878
90; 90; 90
63416Jiyoung Lee; Ja Hun Kwak; Wonyoung Choe
Evolution of form in metal–organic frameworks
Nature Communications, 2017, 8, 14070
1547896 CIFC228 H192 Cu24 N12 O132F m -3 m39.954; 39.954; 39.954
90; 90; 90
63779Jiyoung Lee; Ja Hun Kwak; Wonyoung Choe
Evolution of form in metal–organic frameworks
Nature Communications, 2017, 8, 14070
1547947 CIFC51 H91 Cl21 Fe N14 O6P -113.1207; 15.5348; 22.321
72.773; 77.36; 70.252
4054.1Stefania Tomyn; Sergii I. Shylin; Dmytro Bykov; Vadim Ksenofontov; Elzbieta Gumienna-Kontecka; Volodymyr Bon; Igor O. Fritsky
Indefinitely stable iron(IV) cage complexes formed in water by air oxidation
Nature Communications, 2017, 8, 14099
1547948 CIFC60 H78.56 As2 Fe N12 O19.28P b c a21.088; 21.0711; 29.6134
90; 90; 90
13158.6Stefania Tomyn; Sergii I. Shylin; Dmytro Bykov; Vadim Ksenofontov; Elzbieta Gumienna-Kontecka; Volodymyr Bon; Igor O. Fritsky
Indefinitely stable iron(IV) cage complexes formed in water by air oxidation
Nature Communications, 2017, 8, 14099
1547949 CIFC15 H32 Ca Fe N12 O13P -19.4448; 12.0118; 12.3759
87.085; 73.158; 84.015
1336.17Stefania Tomyn; Sergii I. Shylin; Dmytro Bykov; Vadim Ksenofontov; Elzbieta Gumienna-Kontecka; Volodymyr Bon; Igor O. Fritsky
Indefinitely stable iron(IV) cage complexes formed in water by air oxidation
Nature Communications, 2017, 8, 14099
1547950 CIFC8 H6 Br4 N4 ReP 21 21 219.4226; 10.7168; 13.2648
90; 90; 90
1339.48Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547951 CIFC8 H6 Br4 N4 ReP 21 21 219.2129; 10.5779; 13.0532
90; 90; 90
1272.08Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547952 CIFC8 H6 Br4 N4 ReP 21 21 219.1029; 10.5419; 12.9562
90; 90; 90
1243.3Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547953 CIFC8 H6 Br4 N4 ReP 21 21 219.0638; 10.4978; 12.9039
90; 90; 90
1227.81Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547954 CIFC8 H6 Br4 N4 ReP 1 21 18.9159; 12.7935; 10.4016
90; 91.208; 90
1186.2Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547955 CIFC8 H6 Br4 N4 ReP 1 21 18.873; 12.778; 10.3459
90; 92.25; 90
1172.11Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547956 CIFC8 H6 Br4 N4 ReP 21 21 219.6089; 10.8491; 13.4542
90; 90; 90
1402.57Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547957 CIFC8 H6 Br4 N4 ReP 21 21 219.6184; 10.8488; 13.4471
90; 90; 90
1403.18Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547958 CIFC6 H9 Cl4 N3 ReP n m a10.3829; 13.4805; 9.7632
90; 90; 90
1366.5Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547959 CIFC6 H9 Cl4 N3 ReP n m a10.2971; 13.4016; 9.6238
90; 90; 90
1328.06Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547960 CIFC6 H9 Cl4 N3 ReP n m a10.118; 13.259; 9.3321
90; 90; 90
1251.9Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547961 CIFC6 H9 Cl4 N3 ReP n m a10.0281; 13.122; 9.1585
90; 90; 90
1205.2Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547962 CIFC6 H9 Cl4 N3 ReP n m a9.9548; 12.959; 9.0069
90; 90; 90
1161.9Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547963 CIFC6 H9 Cl4 N3 ReP n m a9.835; 12.816; 8.746
90; 90; 90
1102.4Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547964 CIFC6 H9 Cl4 N3 ReP n m a10.4093; 13.5203; 9.8134
90; 90; 90
1381.11Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547965 CIFC6 H9 Cl4 N3 ReP n m a10.261; 13.4766; 9.5069
90; 90; 90
1314.65Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547966 CIFC8 H6 Br4 N4 ReP 21 21 219.4883; 10.7299; 13.3288
90; 90; 90
1356.99Christopher H. Woodall; Gavin A. Craig; Alessandro Prescimone; Martin Misek; Joan Cano; Juan Faus; Michael R. Probert; Simon Parsons; Stephen Moggach; Jose Martinez-Lillo; Mark Murrie; Konstantin V. Kamenev; Euan K. Brechin
Pressure induced enhancement of the magnetic ordering temperature in rhenium(IV) monomers
Nature Communications, 2017, 7, 13870
1547967 CIFC26 H27 Mg3 N O22P 63/m m c16.2122; 16.2122; 16.0642
90; 90; 120
3656.57Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547968 CIFC44 H36 Mg3 N10 O13P 63/m m c16.997; 16.997; 14.9864
90; 90; 120
3749.5Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547969 CIFC42 H25 Mn3 N6 O13P 63/m m c17.4162; 17.4162; 14.9154
90; 90; 120
3918.1Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547970 CIFC42 H28 Co3 N9 O13P 63/m m c17.0539; 17.0539; 14.9837
90; 90; 120
3774Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547971 CIFC42 H28 N9 O13 Zn3P 63/m m c17.0539; 17.0539; 14.9837
90; 90; 120
3774Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547972 CIFC24 H19 Mg2 O22 VP 63/m m c15.9423; 15.9423; 16.0411
90; 90; 120
3530.75Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547973 CIFC42 H25 Mg2 N6 O19 VP 63/m m c16.6165; 16.6165; 15.3366
90; 90; 120
3667.2Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547974 CIFC42 H22 Mg2 N9 O19 VP 63/m m c16.9065; 16.9065; 14.7154
90; 90; 120
3642.6Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547975 CIFC54 H31 Mg2 N6 O13 VP 63/m m c16.8599; 16.8599; 14.882
90; 90; 120
3663.5Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547976 CIFC54 H31 Mg2 N6 O13 VP 63/m m c16.7913; 16.7913; 20.6558
90; 90; 120
5043.61Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547977 CIFC44 H33 Mg3 N7 O19P 63/m m c16.9671; 16.9671; 15.3079
90; 90; 120
3816.5Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547978 CIFC44 H33 Mg3 N7 O16P 63/m m c16.9886; 16.9886; 15.108
90; 90; 120
3776.2Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547979 CIFC44 H33 Mg3 N7 O13P 63/m m c17.0231; 17.0231; 14.947
90; 90; 120
3751.1Quan-Guo Zhai; Xianhui Bu; Chengyu Mao; Xiang Zhao; Luke Daemen; Yongqiang Cheng; Anibal J. Ramirez-Cuesta; Pingyun Feng
An ultra-tunable platform for molecular engineering of high-performance crystalline porous materials
Nature Communications, 2016, 7, 13645
1547980 CIFC16 H20 N4 Ni O6 P2C 1 2/c 125.9071; 9.1614; 16.4713
90; 100.956; 90
3838.1Victoria E. Campbell; Monica Tonelli; Irene Cimatti; Jean-Baptiste Moussy; Ludovic Tortech; Yannick J. Dappe; Eric Riviere; Regis Guillot; Sophie Delprat; Richard Mattana; Pierre Seneor; Philippe Ohresser; Fadi Choueikani; Edwige Otero; Florian Koprowiak; Vijay Gopal Chilkuri; Nicolas Suaud; Nathalie Guihery; Anouk Galtayries; Frederic Miserque; Marie-Anne Arrio; Philippe Sainctavit; Talal Mallah
Engineering the magnetic coupling and anisotropy at the molecule-magnetic surface interface in molecular spintronic devices
Nature Communications, 2016, 7, 13646
1547981 CIFC16 H20 Co N4 O6 P2C 1 2/c 126.378; 9.059; 16.5517
90; 102.286; 90
3864.6Victoria E. Campbell; Monica Tonelli; Irene Cimatti; Jean-Baptiste Moussy; Ludovic Tortech; Yannick J. Dappe; Eric Riviere; Regis Guillot; Sophie Delprat; Richard Mattana; Pierre Seneor; Philippe Ohresser; Fadi Choueikani; Edwige Otero; Florian Koprowiak; Vijay Gopal Chilkuri; Nicolas Suaud; Nathalie Guihery; Anouk Galtayries; Frederic Miserque; Marie-Anne Arrio; Philippe Sainctavit; Talal Mallah
Engineering the magnetic coupling and anisotropy at the molecule-magnetic surface interface in molecular spintronic devices
Nature Communications, 2016, 7, 13646
1547982 CIFC77 H59 N7 O4P 1 21 116.43; 10.012; 44.3
90; 95.65; 90
7252Georgios Charalambidis; Evangelos Georgilis; Manas K. Panda; Christopher E. Anson; Annie K. Powell; Stephen Doyle; David Moss; Tobias Jochum; Peter N. Horton; Simon J. Coles; Mathieu Linares; David Beljonne; Jean-Valere Naubron; Jonas Conradt; Heinz Kalt; Anna Mitraki; Athanassios G. Coutsolelos; Teodor Silviu Balaban
A switchable self-assembling and disassembling chiral system based on a porphyrin-substituted phenylalanine-phenylalanine motif
Nature Communications, 2016, 7, 12657
1547983 CIFC664 H852 Ag136.45 Cl3 P S64P -128.8117; 29.9302; 54.0382
79.591; 86.179; 83.426
45480.7Huayan Yang; Yu Wang; Xi Chen; Xiaojing Zhao; Lin Gu; Huaqi Huang; Juanzhu Yan; Chaofa Xu; Gang Li; Junchao Wu; Alison J. Edwards; Birger Dittrich; Zichao Tang; Dongdong Wang; Lauri Lehtovaara; Hannu Hakkinen; Nanfeng Zheng
Plasmonic twinned silver nanoparticles with molecular precision
Nature Communications, 2016, 7, 12809
1547984 CIFC1130 H1469 Ag374 Br2 Cl2 S113R -3 c :H67.3343; 67.3343; 188.5858
90; 90; 120
740478Huayan Yang; Yu Wang; Xi Chen; Xiaojing Zhao; Lin Gu; Huaqi Huang; Juanzhu Yan; Chaofa Xu; Gang Li; Junchao Wu; Alison J. Edwards; Birger Dittrich; Zichao Tang; Dongdong Wang; Lauri Lehtovaara; Hannu Hakkinen; Nanfeng Zheng
Plasmonic twinned silver nanoparticles with molecular precision
Nature Communications, 2016, 7, 12809
1547985 CIFC15 H15 N O2 SP 1 21 15.6324; 26.1594; 9.3139
90; 105.68; 90
1321.25Lili Zong; Chao Wang; Adhitya Mangala Putra Moeljadi; Xinyi Ye; Rakesh Ganguly; Yongxin Li; Hajime Hirao; Choon-Hong Tan
Bisguanidinium dinuclear oxodiperoxomolybdosulfate ion pair-catalyzed enantioselective sulfoxidation
Nature Communications, 2016, 7, 13455
1547986 CIFC104 H148 Mo2 N8 O17 SP 1 21 19.9398; 30.471; 17.5604
90; 97.837; 90
5268.9Lili Zong; Chao Wang; Adhitya Mangala Putra Moeljadi; Xinyi Ye; Rakesh Ganguly; Yongxin Li; Hajime Hirao; Choon-Hong Tan
Bisguanidinium dinuclear oxodiperoxomolybdosulfate ion pair-catalyzed enantioselective sulfoxidation
Nature Communications, 2016, 7, 13455
1547987 CIFC13 H17 Cl O3 SP 21 21 215.279; 11.5315; 23.4325
90; 90; 90
1426.4Lili Zong; Chao Wang; Adhitya Mangala Putra Moeljadi; Xinyi Ye; Rakesh Ganguly; Yongxin Li; Hajime Hirao; Choon-Hong Tan
Bisguanidinium dinuclear oxodiperoxomolybdosulfate ion pair-catalyzed enantioselective sulfoxidation
Nature Communications, 2016, 7, 13455
1547988 CIFC12 H15 Br O3 SP 1 21 126.8296; 9.6925; 10.5106
90; 101.233; 90
2680.9Lili Zong; Chao Wang; Adhitya Mangala Putra Moeljadi; Xinyi Ye; Rakesh Ganguly; Yongxin Li; Hajime Hirao; Choon-Hong Tan
Bisguanidinium dinuclear oxodiperoxomolybdosulfate ion pair-catalyzed enantioselective sulfoxidation
Nature Communications, 2016, 7, 13455
1547989 CIFC48 H44 F6 Ir O2 P2P -19.98; 10.9599; 21.0009
75.729; 78.004; 71.392
2088.84Kasper S. Pedersen; Jesper Bendix; Alain Tressaud; Etienne Durand; Hogni Weihe; Zaher Salman; Thorbjorn J Morsing; Daniel N. Woodruff; Yanhua Lan; Wolfgang Wernsdorfer; Corine Mathoniere; Stergios Piligkos; Sophia I. Klokishner; Serghei Ostrovsky; Katharina Ollefs; Fabrice Wilhelm; Andrei Rogalev; Rodolphe Clerac
Iridates from the molecular side
Nature Communications, 2016, 7, 12195
1547990 CIFC5 H6 F1.5 Ir0.25 N2 Zn0.25P 42/n12.4516; 12.4516; 8.1424
90; 90; 90
1262.42Kasper S. Pedersen; Jesper Bendix; Alain Tressaud; Etienne Durand; Hogni Weihe; Zaher Salman; Thorbjorn J Morsing; Daniel N. Woodruff; Yanhua Lan; Wolfgang Wernsdorfer; Corine Mathoniere; Stergios Piligkos; Sophia I. Klokishner; Serghei Ostrovsky; Katharina Ollefs; Fabrice Wilhelm; Andrei Rogalev; Rodolphe Clerac
Iridates from the molecular side
Nature Communications, 2016, 7, 12195
1547991 CIFC48 H40 Cl6 Ir P2P -110.0669; 10.1893; 11.8996
93.574; 99.116; 115.451
1076.51Kasper S. Pedersen; Jesper Bendix; Alain Tressaud; Etienne Durand; Hogni Weihe; Zaher Salman; Thorbjorn J Morsing; Daniel N. Woodruff; Yanhua Lan; Wolfgang Wernsdorfer; Corine Mathoniere; Stergios Piligkos; Sophia I. Klokishner; Serghei Ostrovsky; Katharina Ollefs; Fabrice Wilhelm; Andrei Rogalev; Rodolphe Clerac
Iridates from the molecular side
Nature Communications, 2016, 7, 12195
1547993 CIFC48 H138.5 N12 O51.25 S6F d d 232.757; 34.249; 31.088
90; 90; 90
34877Ming Liu; Linjiang Chen; Scott Lewis; Samantha Y. Chong; Marc A. Little; Tom Hasell; Iain M. Aldous; Craig M. Brown; Martin W. Smith; Carole A. Morrison; Laurence J. Hardwick; Andrew I. Cooper
Three-dimensional protonic conductivity in porous organic cage solids
Nature Communications, 2016, 7, 12750
1547994 CIFC48 H138.5 N12 O51.25 S6F d d 232.848; 34.298; 31.413
90; 90; 90
35391Ming Liu; Linjiang Chen; Scott Lewis; Samantha Y. Chong; Marc A. Little; Tom Hasell; Iain M. Aldous; Craig M. Brown; Martin W. Smith; Carole A. Morrison; Laurence J. Hardwick; Andrew I. Cooper
Three-dimensional protonic conductivity in porous organic cage solids
Nature Communications, 2016, 7, 12750
1547995 CIFC48 H91 Cl12 N12 O4P 4120.2276; 20.2276; 32.016
90; 90; 90
13099.5Ming Liu; Linjiang Chen; Scott Lewis; Samantha Y. Chong; Marc A. Little; Tom Hasell; Iain M. Aldous; Craig M. Brown; Martin W. Smith; Carole A. Morrison; Laurence J. Hardwick; Andrew I. Cooper
Three-dimensional protonic conductivity in porous organic cage solids
Nature Communications, 2016, 7, 12750
1547996 CIFC62 H77 N4 P4 Si4 TbC 1 2/c 131.7332; 25.7464; 20.982
90; 132.711; 90
12596.1Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1547997 CIFC89 H124 Ce K N4 O8 P4 Si4P -116.9671; 17.9463; 19.155
71.281; 64.086; 65.421
4701.3Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1547998 CIFC89 H124 K N4 O8 P4 Pr Si4P -116.9776; 17.8949; 19.1874
71.135; 64.209; 65.333
4697.6Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1547999 CIFC90 H132 K N4 O10 P4 Si4 TbP -115.1657; 15.2813; 21.1867
98.753; 94.959; 93.489
4821Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548000 CIFC67 H88 Ce N4 P4 Si4P -112.5621; 13.937; 21.4408
95.8269; 101.874; 109.053
3414.01Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548001 CIFC39 H60 N2 P2 Si4 UP n m a19.1815; 19.125; 12.1896
90; 90; 90
4471.7Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548002 CIFC69 H84 Ag N4 P4 Pr Si4C 1 2/c 145.8315; 13.00211; 24.0634
90; 104.354; 90
13891.9Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548003 CIFC68 H90 N4 P4 Si4 UP -112.6142; 13.8834; 21.4347
95.968; 101.233; 109.178
3419.9Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548004 CIFC65.5 H80 N4 P4 Si4 ThP -112.9528; 14.0462; 19.2134
95.067; 92.9824; 110.18
3255.49Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548005 CIFC39 H60 N2 P2 Si4 ThP n m a19.2611; 19.2083; 12.23
90; 90; 90
4524.8Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548006 CIFC69 H84 Ag N4 P4 Si4 TbC 1 2/c 145.786; 12.9185; 24.1821
90; 104.683; 90
13836.3Matthew Gregson; Erli Lu; David P. Mills; Floriana Tuna; Eric J. L. McInnes; Christoph Hennig; Andreas C. Scheinost; Jonathan McMaster; William Lewis; Alexander J. Blake; Andrew Kerridge; Stephen T. Liddle
The inverse-trans-influence in tetravalent lanthanide and actinide bis(carbene) complexes
Nature Communications, 2017, 8, 14137
1548007 CIFC20 H17 N2 O4C c c a22.313; 26.967; 12.873
90; 90; 90
7746You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548008 CIFC20 H17 N2 O4C c c a22.143; 26.947; 12.88
90; 90; 90
7685You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548009 CIFC20 H17 N2 O4C c c a22.283; 26.935; 12.891
90; 90; 90
7737You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548010 CIFC20 H17 N2 O4C c c a22.39; 26.954; 12.88
90; 90; 90
7773You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548011 CIFC20 H17 N2 O4C c c a22.519; 26.938; 12.867
90; 90; 90
7805You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548012 CIFC20 H17 N2 O4C c c a22.691; 26.989; 12.841
90; 90; 90
7864You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548013 CIFC20 H17 N2 O4C c c a22.819; 27.035; 12.839
90; 90; 90
7921You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548014 CIFC20 H17 N2 O4C c c a22.975; 27.014; 12.824
90; 90; 90
7959You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548015 CIFC20 H17 N2 O4C c c a23.21; 26.944; 12.808
90; 90; 90
8010You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548016 CIFC20 H17 N2 O4C c c a23.552; 26.838; 12.801
90; 90; 90
8091You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548017 CIFC20 H17 N2 O4C c c a23.966; 26.5; 12.776
90; 90; 90
8114You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548018 CIFC10 H8.5 N O2P 42/n b c17.856; 17.856; 12.787
90; 90; 90
4077You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548019 CIFC10 H8.5 N O2P 42/n b c17.491; 17.491; 12.915
90; 90; 90
3951You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548020 CIFC10 H8.5 N O2P 42/n b c17.289; 17.289; 12.957
90; 90; 90
3873You-Gui Huang; Yoshihito Shiota; Ming-Yan Wu; Sheng-Qun Su; Zi-Shuo Yao; Soonchul Kang; Shinji Kanegawa; Guo-Ling Li; Shu-Qi Wu; Takashi Kamachi; Kazunari Yoshizawa; Katsuhiko Ariga; Mao-Chun Hong; Osamu Sato
Superior thermoelasticity and shape-memory nanopores in a porous supramolecular organic framework
Nature Communications, 2016, 7, 11564
1548022 CIFC34 H36 N6 O10 Pt3C 1 2/c 123.042; 9.2011; 20.049
90; 116.718; 90
3796.8Christopher H. Hendon; Aron Walsh; Norinobu Akiyama; Yosuke Konno; Takashi Kajiwara; Tasuku Ito; Hiroshi Kitagawa; Ken Sakai
One-dimensional Magnus-type platinum double salts
Nature Communications, 2016, 7, 11950
1548023 CIFC34 H47 N6 O15.5 Pt3P 1 21/n 118.7199; 9.6901; 23.7454
90; 101.185; 90
4225.5Christopher H. Hendon; Aron Walsh; Norinobu Akiyama; Yosuke Konno; Takashi Kajiwara; Tasuku Ito; Hiroshi Kitagawa; Ken Sakai
One-dimensional Magnus-type platinum double salts
Nature Communications, 2016, 7, 11950
1548024 CIFC68 H88 N12 O28 Pt6C 1 2/c 122.9917; 17.8912; 20.7881
90; 102.477; 90
8349.2Christopher H. Hendon; Aron Walsh; Norinobu Akiyama; Yosuke Konno; Takashi Kajiwara; Tasuku Ito; Hiroshi Kitagawa; Ken Sakai
One-dimensional Magnus-type platinum double salts
Nature Communications, 2016, 7, 11950
1548025 CIFC34 H50 N7 O20 Pt3P 1 2/c 112.158; 10.943; 16.944
90; 93.548; 90
2250Christopher H. Hendon; Aron Walsh; Norinobu Akiyama; Yosuke Konno; Takashi Kajiwara; Tasuku Ito; Hiroshi Kitagawa; Ken Sakai
One-dimensional Magnus-type platinum double salts
Nature Communications, 2016, 7, 11950
1548026 CIFC67 H111 B N4 O2 Si3 ThP -114.3496; 17.9265; 26.5741
89.696; 88.052; 86.937
6822.1Elizabeth P. Wildman; Gabor Balazs; Ashley J. Wooles; Manfred Scheer; Stephen T. Liddle
Thorium-phosphorus triamidoamine complexes containing Th-P single- and multiple-bond interactions
Nature Communications, 2016, 7, 12884
1548027 CIFC33 H77 N4 P Si3 ThP 1 21/n 118.6189; 22.6046; 22.2818
90; 113.726; 90
8585.2Elizabeth P. Wildman; Gabor Balazs; Ashley J. Wooles; Manfred Scheer; Stephen T. Liddle
Thorium-phosphorus triamidoamine complexes containing Th-P single- and multiple-bond interactions
Nature Communications, 2016, 7, 12884
1548028 CIFC56 H116 N4 Na O8 P Si3 ThP 21 21 2113.5631; 21.2452; 23.4879
90; 90; 90
6768.1Elizabeth P. Wildman; Gabor Balazs; Ashley J. Wooles; Manfred Scheer; Stephen T. Liddle
Thorium-phosphorus triamidoamine complexes containing Th-P single- and multiple-bond interactions
Nature Communications, 2016, 7, 12884
1548029 CIFC80 H167 N8 P Si6 Th2P -113.8618; 15.2608; 22.2411
96.043; 91.075; 98.324
4626.7Elizabeth P. Wildman; Gabor Balazs; Ashley J. Wooles; Manfred Scheer; Stephen T. Liddle
Thorium-phosphorus triamidoamine complexes containing Th-P single- and multiple-bond interactions
Nature Communications, 2016, 7, 12884
1548030 CIFC84 H187 N8 Na O9 P Si6 Th2P 1 21/c 123.1479; 17.4133; 26.4947
90; 103.615; 90
10379.4Elizabeth P. Wildman; Gabor Balazs; Ashley J. Wooles; Manfred Scheer; Stephen T. Liddle
Thorium-phosphorus triamidoamine complexes containing Th-P single- and multiple-bond interactions
Nature Communications, 2016, 7, 12884
1548031 CIFC75 H134 B N5 O3 Si3 ThP 1 21/n 118.4228; 21.7375; 20.5577
90; 108.19; 90
7821.2Elizabeth P. Wildman; Gabor Balazs; Ashley J. Wooles; Manfred Scheer; Stephen T. Liddle
Thorium-phosphorus triamidoamine complexes containing Th-P single- and multiple-bond interactions
Nature Communications, 2016, 7, 12884
1548032 CIFC5 H7 N8 O0.5 ZnP 31 2 19.6767; 9.6767; 20.172
90; 90; 120
1635.8Pei-Qin Liao; Wei-Xiong Zhang; Jie-Peng Zhang; Xiao-Ming Chen
Efficient purification of ethene by an ethane-trapping metal-organic framework
Nature Communications, 2015, 6, 8697
1548033 CIFC5 H6 N8 ZnP 31 2 19.6963; 9.6963; 20.126
90; 90; 120
1638.7Pei-Qin Liao; Wei-Xiong Zhang; Jie-Peng Zhang; Xiao-Ming Chen
Efficient purification of ethene by an ethane-trapping metal-organic framework
Nature Communications, 2015, 6, 8697
1548034 CIFC5.7 H8.09 N8 ZnP 31 2 19.663; 9.663; 20.224
90; 90; 120
1635.4Pei-Qin Liao; Wei-Xiong Zhang; Jie-Peng Zhang; Xiao-Ming Chen
Efficient purification of ethene by an ethane-trapping metal-organic framework
Nature Communications, 2015, 6, 8697
1548035 CIFC5.78 H7.56 N8 ZnP 31 2 19.6896; 9.6896; 20.153
90; 90; 120
1638.6Pei-Qin Liao; Wei-Xiong Zhang; Jie-Peng Zhang; Xiao-Ming Chen
Efficient purification of ethene by an ethane-trapping metal-organic framework
Nature Communications, 2015, 6, 8697
1548036 CIFC5.13 H6 N8 O0.27 ZnP 31 2 19.7682; 9.7682; 20.1
90; 90; 120
1660.9Pei-Qin Liao; Wei-Xiong Zhang; Jie-Peng Zhang; Xiao-Ming Chen
Efficient purification of ethene by an ethane-trapping metal-organic framework
Nature Communications, 2015, 6, 8697
1548037 CIFC30 H50 N6 O9P 14.9205; 11.812; 14.637
99.369; 93.376; 98.82
826.4Tom Guterman; Micha Kornreich; Avigail Stern; Lihi Adler-Abramovich; Danny Porath; Roy Beck; Linda J. W. Shimon; Ehud Gazit
Formation of bacterial pilus-like nanofibres by designed minimalistic self-assembling peptides
Nature Communications, 2016, 7, 13482
1548038 CIFC24 H12P 1 21/n 110.0403; 4.671; 15.6056
90; 106.407; 90
702.07Jason Potticary; Lui R. Terry; Christopher Bell; Alexandros N. Papanikolopoulos; Peter C. M. Christianen; Hans Engelkamp; Andrew M. Collins; Claudio Fontanesi; Gabriele Kociok-Kohn; Simon Crampin; Enrico Da Como; Simon R. Hall
An unforeseen polymorph of coronene by the application of magnetic fields during crystal growth
Nature Communications, 2016, 7, 11555
1548039 CIFC24 H12P 1 21/n 110.3855; 3.8212; 17.2111
90; 96.235; 90
678.98Jason Potticary; Lui R. Terry; Christopher Bell; Alexandros N. Papanikolopoulos; Peter C. M. Christianen; Hans Engelkamp; Andrew M. Collins; Claudio Fontanesi; Gabriele Kociok-Kohn; Simon Crampin; Enrico Da Como; Simon R. Hall
An unforeseen polymorph of coronene by the application of magnetic fields during crystal growth
Nature Communications, 2016, 7, 11555
1548040 CIFC14 H8 Ca O6 S Xe0.42P 1 21/n 111.6193; 5.5667; 22.9312
90; 100.897; 90
1456.47Debasis Banerjee; Cory M. Simon; Anna M. Plonka; Radha K. Motkuri; Jian Liu; Xianyin Chen; Berend Smit; John B. Parise; Maciej Haranczyk; Praveen K. Thallapally
Metal-organic framework with optimally selective xenon adsorption and separation
Nature Communications, 2016, 7, 11831
1548041 CIFC14 H8 Ca Kr0.15 O6 SP 1 21/n 111.8819; 5.5555; 22.6411
90; 101.302; 90
1465.55Debasis Banerjee; Cory M. Simon; Anna M. Plonka; Radha K. Motkuri; Jian Liu; Xianyin Chen; Berend Smit; John B. Parise; Maciej Haranczyk; Praveen K. Thallapally
Metal-organic framework with optimally selective xenon adsorption and separation
Nature Communications, 2016, 7, 11831
1548042 CIFC45 H69 Co N3 O13 Ru2P 1 21/n 122.3181; 23.1069; 22.5654
90; 112.263; 90
10769.5Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548043 CIFC46 H71 Cl2 Co F6 N3 O13 P Ru2P -111.466; 14.9252; 18.9394
84.303; 88.505; 68.403
2998.5Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548044 CIFC209 H369 Co Cr14 F16 N5 Ni2 O77 Ru2P 61 2 224.8796; 24.8796; 96.7732
90; 90; 120
51876.7Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548045 CIFC216 H347 Cl2 Co Cr14 F16 N9 Ni2 O72P -119.3835; 27.6538; 29.1765
76.822; 84.5616; 89.7001
15156.9Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548046 CIFC206 H330 Cl2 Co Cr14 F16 N8 Ni2 O72C 1 2/c 156.308; 16.4647; 30.7417
90; 93.238; 90
28455Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548047 CIFC189 H322 Co Cr14 F16 N8 Ni2 O65 S2P -116.6948; 29.8156; 31.7036
70.4222; 83.8761; 77.9945
14531.7Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548048 CIFC34 H27 B2 Co F8 N6 O7C 1 2/c 140.103; 9.0797; 21.8936
90; 106.06; 90
7660.8Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548049 CIFC44.5 H29 B2 Cl Co F8 N6 O4P -19.2332; 12.2853; 19.3386
85.098; 76.757; 88.79
2127.5Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548050 CIFC97 H161 Cr7.04 F8 N4 Ni0.96 O32P 1 21/c 116.7978; 31.2594; 24.9128
90; 103.209; 90
12735.3Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548051 CIFC110 H173 Cr7 F8 N4 Ni O32P 1 21/n 130.5037; 16.5057; 32.2556
90; 115.872; 90
14612.5Jesus Ferrando-Soria; Eufemio Moreno Pineda; Alessandro Chiesa; Antonio Fernandez; Samantha A. Magee; Stefano Carretta; Paolo Santini; Inigo J. Vitorica-Yrezabal; Floriana Tuna; Grigore A. Timco; Eric J.L. McInnes; Richard E.P. Winpenny
A modular design of molecular qubits to implement universal quantum gates
Nature Communications, 2016, 7, 11377
1548069 CIFC68 H27 Al2 F73.75 Ga N6 O8C 1 2/c 125.1999; 15.4651; 24.792
90; 112.931; 90
8898.4Martin R. Lichtenthaler; Florian Stahl; Daniel Kratzert; Lorenz Heidinger; Erik Schleicher; Julian Hamann; Daniel Himmel; Stefan Weber; Ingo Krossing
Cationic cluster formation versus disproportionation of low-valent indium and gallium complexes of 2,2'-bipyridine
Nature Communications, 2015, 6, 8288
1548070 CIFC108 H48 Al3 F108 In3 N12 O12P 1 21/c 122.4009; 30.7088; 20.4177
90; 95.459; 90
13981.7Martin R. Lichtenthaler; Florian Stahl; Daniel Kratzert; Lorenz Heidinger; Erik Schleicher; Julian Hamann; Daniel Himmel; Stefan Weber; Ingo Krossing
Cationic cluster formation versus disproportionation of low-valent indium and gallium complexes of 2,2'-bipyridine
Nature Communications, 2015, 6, 8288
1548071 CIFC422 H184 Al12 F437 In12 N40 O48P -116.2891; 25.6709; 33.2531
89.47; 87.358; 81.522
13738.4Martin R. Lichtenthaler; Florian Stahl; Daniel Kratzert; Lorenz Heidinger; Erik Schleicher; Julian Hamann; Daniel Himmel; Stefan Weber; Ingo Krossing
Cationic cluster formation versus disproportionation of low-valent indium and gallium complexes of 2,2'-bipyridine
Nature Communications, 2015, 6, 8288
1548072 CIFC124 H48 Al4 F144 In4 N12 O16P -134.744; 34.792; 37.21
106.127; 101.609; 118.938
34671Martin R. Lichtenthaler; Florian Stahl; Daniel Kratzert; Lorenz Heidinger; Erik Schleicher; Julian Hamann; Daniel Himmel; Stefan Weber; Ingo Krossing
Cationic cluster formation versus disproportionation of low-valent indium and gallium complexes of 2,2'-bipyridine
Nature Communications, 2015, 6, 8288
1548073 CIFC86 H39 Al2 F75 In2 N6 O8P 1 21/c 120.2872; 28.7711; 19.7149
90; 117.303; 90
10225.3Martin R. Lichtenthaler; Florian Stahl; Daniel Kratzert; Lorenz Heidinger; Erik Schleicher; Julian Hamann; Daniel Himmel; Stefan Weber; Ingo Krossing
Cationic cluster formation versus disproportionation of low-valent indium and gallium complexes of 2,2'-bipyridine
Nature Communications, 2015, 6, 8288
1548074 CIFC80 H36 Ag Al2 F76 In N4 O8P 1 21/n 116.4785; 23.7211; 25.2293
90; 97.519; 90
9777Martin R. Lichtenthaler; Florian Stahl; Daniel Kratzert; Lorenz Heidinger; Erik Schleicher; Julian Hamann; Daniel Himmel; Stefan Weber; Ingo Krossing
Cationic cluster formation versus disproportionation of low-valent indium and gallium complexes of 2,2'-bipyridine
Nature Communications, 2015, 6, 8288
1548075 CIFC38 H80 As2 Ge2 K2 N6 O12P 110.9738; 11.9313; 12.6146
118.021; 108.361; 96.476
1315.07Stefan Mitzinger; Lies Broeckaert; Werner Massa; Florian Weigend; Stefanie Dehnen
Understanding of multimetallic cluster growth
Nature Communications, 2016, 7, 10480
1548076 CIFC36 H72 As2 Ge7 K2 N4 O12P -3 c 111.8653; 11.8653; 22.3848
90; 90; 120
2729.24Stefan Mitzinger; Lies Broeckaert; Werner Massa; Florian Weigend; Stefanie Dehnen
Understanding of multimetallic cluster growth
Nature Communications, 2016, 7, 10480
1548077 CIFC68 H124 As4 Ge6 K3 N6 O18 TaP 1 21/n 113.7543; 28.6077; 22.9845
90; 92.489; 90
9035.4Stefan Mitzinger; Lies Broeckaert; Werner Massa; Florian Weigend; Stefanie Dehnen
Understanding of multimetallic cluster growth
Nature Communications, 2016, 7, 10480
1548078 CIFC56 H116 As4.79 Ge8 K3 N8 O18 TaP -116.6082; 22.696; 23.9068
94.96; 94.036; 91.402
8951.2Stefan Mitzinger; Lies Broeckaert; Werner Massa; Florian Weigend; Stefanie Dehnen
Understanding of multimetallic cluster growth
Nature Communications, 2016, 7, 10480
1548079 CIFC68 H90 O12 P4 Zn11A e a 227.6082; 23.0173; 24.3319
90; 90; 90
15462.1Sebastian D. Pike; Edward R. White; Milo S. P. Shaffer; Charlotte K. Williams
Simple phosphinate ligands access zinc clusters identified in the synthesis of zinc oxide nanoparticles
Nature Communications, 2016, 7, 13008
1548080 CIFC56 H60 O8 P4 Zn4C 1 2/c 124.3886; 10.1308; 23.8034
90; 110.684; 90
5502.2Sebastian D. Pike; Edward R. White; Milo S. P. Shaffer; Charlotte K. Williams
Simple phosphinate ligands access zinc clusters identified in the synthesis of zinc oxide nanoparticles
Nature Communications, 2016, 7, 13008
1548081 CIFC98 H100 O25 P6 Zn4P 1 21/c 126.8366; 19.619; 18.5191
90; 94.853; 90
9715.5Sebastian D. Pike; Edward R. White; Milo S. P. Shaffer; Charlotte K. Williams
Simple phosphinate ligands access zinc clusters identified in the synthesis of zinc oxide nanoparticles
Nature Communications, 2016, 7, 13008
1548082 CIFC115 H101 O21 P9 Zn6P 1 21/c 118.0222; 27.3672; 24.9782
90; 104.179; 90
11944.4Sebastian D. Pike; Edward R. White; Milo S. P. Shaffer; Charlotte K. Williams
Simple phosphinate ligands access zinc clusters identified in the synthesis of zinc oxide nanoparticles
Nature Communications, 2016, 7, 13008
1548083 CIFC124 H122 B3 O28 P9 Zn6P -118.9696; 19.3442; 35.8523
100.397; 98.3638; 98.829
12582.2Sebastian D. Pike; Edward R. White; Milo S. P. Shaffer; Charlotte K. Williams
Simple phosphinate ligands access zinc clusters identified in the synthesis of zinc oxide nanoparticles
Nature Communications, 2016, 7, 13008
1548084 CIFC51 H29 N3 O13 Zn3P -313.05; 13.05; 16.2992
90; 90; 120
2403.91Huajun He; En Ma; Yuanjing Cui; Jiancan Yu; Yu Yang; Tao Song; Chuan-De Wu; Xueyuan Chen; Banglin Chen; Guodong Qian
Polarized three-photon-pumped laser in a single MOF microcrystal
Nature Communications, 2016, 7, 11087
1548085 CIFC66 H150 Li2 N10 Si6 U2C 1 2/c 137.092; 15.8045; 22.2156
90; 140.685; 90
8251David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548086 CIFC66 H150 K2 N10 Si6 U2P b c a13.8074; 23.2204; 26.3621
90; 90; 90
8452David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548087 CIFC66 H150 N10 Rb2 Si6 U2P b c a13.7527; 23.1023; 26.7606
90; 90; 90
8502.4David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548088 CIFC66 H150 Cs2 N10 Si6 U2I 1 2/a 122.76348; 17.0958; 22.50605
90; 100.782; 90
8603.83David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548089 CIFC53 H115 K N5 O10 Si3 UP -111.3428; 16.5053; 18.3155
79.554; 85.928; 81.641
3332.79David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548090 CIFC61 H115 N5 O10 Rb Si3 UP 1 21/c 115.8741; 18.5622; 24.7397
90; 104.27; 90
7064.8David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548091 CIFC61 H115 Cs N5 O10 Si3 UP 1 21/c 116.09798; 18.4937; 24.5732
90; 103.225; 90
7121.71David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548092 CIFC41 H91 Li N5 O4 Si3 UP n 21 a25.5519; 13.37345; 14.81292
90; 90; 90
5061.83David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548093 CIFC52.5 H116.5 N5 O6 Rb Si3 UP a -323.7586; 23.7586; 23.7586
90; 90; 90
13411David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548094 CIFC45 H99 Cs N5 O6 Si3 UP 1 21/c 114.5874; 13.7318; 28.4495
90; 91.52; 90
5696.7David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548095 CIFC53 H99 K N5 O6 Si3 UP 21 21 2111.83314; 22.09845; 22.8903
90; 90; 90
5985.68David M. King; Peter A. Cleaves; Ashley J. Wooles; Benedict M. Gardner; Nicholas F. Chilton; Floriana Tuna; William Lewis; Eric J. L. McInnes; Stephen T. Liddle
Molecular and electronic structure of terminal and alkali metal-capped uranium(V) nitride complexes
Nature Communications, 2016, 7, 13773
1548158 CIFC23 H35 N O2 SP 1 21/c 121.7729; 10.4524; 9.7642
90; 88.212; 90
2221M. A. Neumann; J. van de Streek; F. P. A. Fabbiani; P. Hidber; O. Grassmann
Combined crystal structure prediction and high-pressure crystallization in rational pharmaceutical polymorph screening
Nature Communications, 2015, 6, 7793

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