Crystallography Open Database

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7124942 CIFC28 H27 B F4 N4P 1 21/c 16.691; 29.96; 12.952
90; 104.2; 90
2517Wilkie, Ross P.; Neal, Andrew R.; Johnston, Craig A.; Voute, Nicholas; Lancefield, Christopher S.; Stell, Matthew D.; Medda, Federico; Makiyi, Edward F.; Turner, Emma M.; Stephen Ojo, O.; Slawin, Alexandra M. Z.; Lebl, Tomas; Mullen, Peter; Harrison, David J.; Ireland, Chris M.; Westwood, Nicholas J.
Total synthesis of dehaloperophoramidine using a highly diastereoselective Hosomi-Sakurai reaction.
Chemical communications (Cambridge, England), 2016, 52, 10747-10750
7124943 CIFC29 H31 N3 O SP 1 21 113.438; 14.165; 13.5796
90; 93.657; 90
2579.6Wilkie, Ross P.; Neal, Andrew R.; Johnston, Craig A.; Voute, Nicholas; Lancefield, Christopher S.; Stell, Matthew D.; Medda, Federico; Makiyi, Edward F.; Turner, Emma M.; Stephen Ojo, O.; Slawin, Alexandra M. Z.; Lebl, Tomas; Mullen, Peter; Harrison, David J.; Ireland, Chris M.; Westwood, Nicholas J.
Total synthesis of dehaloperophoramidine using a highly diastereoselective Hosomi-Sakurai reaction.
Chemical communications (Cambridge, England), 2016, 52, 10747-10750
7124944 CIFC56 H82 N4 Na4 O6P 1 2/c 118.372; 10.659; 28.255
90; 100.193; 90
5446Lichtenberg, C.; Krummenacher, I.
Aminotroponiminates as tunable, redox-active ligands: reversible single electron transfer and reductive dimerisation.
Chemical communications (Cambridge, England), 2016, 52, 10044-10047
7124945 CIFC25 H39 Co N6 O4P 1 21/n 114.5396; 9.6307; 20.8295
90; 109.316; 90
2752.5Das, Debasree; Pattanayak, Santanu; Singh, Kundan K.; Garai, Bikash; Sen Gupta, Sayam
Electrocatalytic water oxidation by a molecular cobalt complex through a high valent cobalt oxo intermediate.
Chemical communications (Cambridge, England), 2016, 52, 11787-11790
7124946 CIFC167 H278 Al4 N8 O12I 1 2/a 129.9091; 11.0908; 25.9834
90; 108.075; 90
8193.8McKeown, Paul; Davidson, Matthew G.; Kociok-Köhn, Gabriele; Jones, Matthew D.
Aluminium salalens vs. salans: "Initiator Design" for the isoselective polymerisation of rac-lactide.
Chemical communications (Cambridge, England), 2016, 52, 10431-10434
7124947 CIFC33 H51 Al N2 O3P 1 21/c 112.1388; 19.0837; 14.1406
90; 102.663; 90
3196.04McKeown, Paul; Davidson, Matthew G.; Kociok-Köhn, Gabriele; Jones, Matthew D.
Aluminium salalens vs. salans: "Initiator Design" for the isoselective polymerisation of rac-lactide.
Chemical communications (Cambridge, England), 2016, 52, 10431-10434
7124948 CIFC38 H61 Al N2 O2P 1 21/c 113.8779; 13.002; 20.8532
90; 98.2288; 90
3724McKeown, Paul; Davidson, Matthew G.; Kociok-Köhn, Gabriele; Jones, Matthew D.
Aluminium salalens vs. salans: "Initiator Design" for the isoselective polymerisation of rac-lactide.
Chemical communications (Cambridge, England), 2016, 52, 10431-10434
7124949 CIFC43 H61 Al N2 O3P -110.9794; 14.2923; 15.1168
115.692; 100.605; 102.864
1974.85McKeown, Paul; Davidson, Matthew G.; Kociok-Köhn, Gabriele; Jones, Matthew D.
Aluminium salalens vs. salans: "Initiator Design" for the isoselective polymerisation of rac-lactide.
Chemical communications (Cambridge, England), 2016, 52, 10431-10434
7124950 CIFC23 H20 Br N O P TcC 1 2/c 122.001; 13.607; 17.541
90; 126.91; 90
4198.8Ackermann, J.; Hagenbach, A.; Abram, U.
{Tc(NO)(Cp)(PPh3)}(+) - a novel technetium(i) core.
Chemical communications (Cambridge, England), 2016, 52, 10285-10288
7124951 CIFC24 H20 B F4 N O2 P TcP 1 21/c 19.27; 17.374; 14.27
90; 100.29; 90
2261.3Ackermann, J.; Hagenbach, A.; Abram, U.
{Tc(NO)(Cp)(PPh3)}(+) - a novel technetium(i) core.
Chemical communications (Cambridge, England), 2016, 52, 10285-10288
7124952 CIFC29 H25 N O P TcP 1 21 19.179; 13.937; 10.048
90; 112.89; 90
1184.2Ackermann, J.; Hagenbach, A.; Abram, U.
{Tc(NO)(Cp)(PPh3)}(+) - a novel technetium(i) core.
Chemical communications (Cambridge, England), 2016, 52, 10285-10288
7124953 CIFC36.5 H31 Br3 Cl N O3 P2 TcP 1 21/c 112.551; 14.394; 44.488
90; 97.55; 90
7967.5Ackermann, J.; Hagenbach, A.; Abram, U.
{Tc(NO)(Cp)(PPh3)}(+) - a novel technetium(i) core.
Chemical communications (Cambridge, England), 2016, 52, 10285-10288
7124954 CIFC25 H28 N2 O4 SP 21 21 218.782; 10.8274; 26.0299
90; 90; 90
2475.08Rainoldi, G.; Faltracco, M.; Lo Presti, L.; Silvani, A.; Lesma, G.
Highly diastereoselective entry into chiral spirooxindole-based 4-methyleneazetidines via formal [2+2] annulation reaction.
Chemical communications (Cambridge, England), 2016, 52, 11575-11578
7124955 CIFC18 H12 Cu2 N0 O10 SiP 63/m m c18.5185; 18.5185; 19.1215
90; 90; 120
5678.9Gao, Chao-Ying; Tian, Hong-Rui; Ai, Jing; Li, Lei-Jiao; Dang, Song; Lan, Ya-Qian; Sun, Zhong-Ming
A microporous Cu-MOF with optimized open metal sites and pore spaces for high gas storage and active chemical fixation of CO2.
Chemical communications (Cambridge, England), 2016, 52, 11147-11150
7124956 CIFC8 H16 Cu F6 N4 O4 VP 4/n b m :29.7325; 9.7325; 8.2154
90; 90; 90
778.18Manson, Jamie L.; Schlueter, John A.; Garrett, Kerry E.; Goddard, Paul A.; Lancaster, Tom; Möller, Johannes S; Blundell, Stephen J.; Steele, Andrew J.; Franke, Isabel; Pratt, Francis L.; Singleton, John; Bendix, Jesper; Lapidus, Saul H.; Uhlarz, Marc; Ayala-Valenzuela, Oscar; McDonald, Ross D.; Gurak, Mary; Baines, Christopher
Bimetallic MOFs (H<sub>3</sub>O)<sub>x</sub>[Cu(MF<sub>6</sub>)(pyrazine)<sub>2</sub>]·(4 - x)H<sub>2</sub>O (M = V<sup>4+</sup>, x = 0; M = Ga<sup>3+</sup>, x = 1): co-existence of ordered and disordered quantum spins in the V<sup>4+</sup> system.
Chemical communications (Cambridge, England), 2016, 52, 12653-12656
7124957 CIFC8 H17 Cu F6 Ga N4 O4P 4/n b m :29.7134; 9.7134; 8.2415
90; 90; 90
777.59Manson, Jamie L.; Schlueter, John A.; Garrett, Kerry E.; Goddard, Paul A.; Lancaster, Tom; Möller, Johannes S; Blundell, Stephen J.; Steele, Andrew J.; Franke, Isabel; Pratt, Francis L.; Singleton, John; Bendix, Jesper; Lapidus, Saul H.; Uhlarz, Marc; Ayala-Valenzuela, Oscar; McDonald, Ross D.; Gurak, Mary; Baines, Christopher
Bimetallic MOFs (H<sub>3</sub>O)<sub>x</sub>[Cu(MF<sub>6</sub>)(pyrazine)<sub>2</sub>]·(4 - x)H<sub>2</sub>O (M = V<sup>4+</sup>, x = 0; M = Ga<sup>3+</sup>, x = 1): co-existence of ordered and disordered quantum spins in the V<sup>4+</sup> system.
Chemical communications (Cambridge, England), 2016, 52, 12653-12656
7124958 CIFC24 H20 N2 O2P 1 21/c 110.3006; 17.4826; 10.8631
90; 92.484; 90
1954.4Huo, Congde; Dong, Jie; Su, Yingpeng; Tang, Jing; Chen, Fengjuan
Iron-catalyzed oxidative sp<sup>3</sup> carbon-hydrogen bond functionalization of 3,4-dihydro-1,4-benzoxazin-2-ones.
Chemical communications (Cambridge, England), 2016, 52, 13341-13344
7124959 CIFC19 H22 N2 O2 SP 1 21 19.5967; 9.265; 10.1709
90; 102.244; 90
883.76Zhao, Quan-Qing; Hu, Xiao-Qiang; Yang, Meng-Nan; Chen, Jia-Rong; Xiao, Wen-Jing
A visible-light photocatalytic N-radical cascade of hydrazones for the synthesis of dihydropyrazole-fused benzosultams.
Chemical communications (Cambridge, England), 2016, 52, 12749-12752
7124960 CIFC19 H20 N2 O2 SP -19.31; 13.2449; 14.8906
69.506; 77.927; 89.163
1678.5Zhao, Quan-Qing; Hu, Xiao-Qiang; Yang, Meng-Nan; Chen, Jia-Rong; Xiao, Wen-Jing
A visible-light photocatalytic N-radical cascade of hydrazones for the synthesis of dihydropyrazole-fused benzosultams.
Chemical communications (Cambridge, England), 2016, 52, 12749-12752
7124961 CIFC104 H92 Br8 Cl2 N4 OP -110.9254; 13.4449; 15.8457
95.9; 100.524; 95.947
2258.4Krzeszewski, Maciej; Swider, Paweł; Dobrzycki, Łukasz; Cyrański, Michał K; Danikiewicz, Witold; Gryko, Daniel T.
The role of steric hindrance in the intramolecular oxidative aromatic coupling of pyrrolo[3,2-b]pyrroles.
Chemical communications (Cambridge, England), 2016, 52, 11539-11542
7124962 CIFC46 H51 Ge N2 O PP 1 21/n 113.91699; 19.62321; 14.94628
90; 94.7717; 90
4067.62Li, Zhongshu; Chen, Xiaodan; Li, Yaqi; Su, Cheng-Yong; Grützmacher, Hansjörg
N-Heterocyclic carbene phosphaketene adducts as precursors to carbene-phosphinidene adducts and a rearranged π-system.
Chemical communications (Cambridge, England), 2016, 52, 11343-11346
7124963 CIFC46 H51 N2 O P SiP -19.4352; 12.6209; 17.8147
85.36; 78.369; 76.089
2015.71Li, Zhongshu; Chen, Xiaodan; Li, Yaqi; Su, Cheng-Yong; Grützmacher, Hansjörg
N-Heterocyclic carbene phosphaketene adducts as precursors to carbene-phosphinidene adducts and a rearranged π-system.
Chemical communications (Cambridge, England), 2016, 52, 11343-11346
7124964 CIFC46 H51 N2 O P SnP 1 21/n 114.0166; 19.8309; 14.945
90; 94.185; 90
4143.06Li, Zhongshu; Chen, Xiaodan; Li, Yaqi; Su, Cheng-Yong; Grützmacher, Hansjörg
N-Heterocyclic carbene phosphaketene adducts as precursors to carbene-phosphinidene adducts and a rearranged π-system.
Chemical communications (Cambridge, England), 2016, 52, 11343-11346
7124965 CIFC49 H61 N2 O P SnP -110.64809; 11.6076; 19.4163
91.4216; 92.8956; 110.289
2245.77Li, Zhongshu; Chen, Xiaodan; Li, Yaqi; Su, Cheng-Yong; Grützmacher, Hansjörg
N-Heterocyclic carbene phosphaketene adducts as precursors to carbene-phosphinidene adducts and a rearranged π-system.
Chemical communications (Cambridge, England), 2016, 52, 11343-11346
7124966 CIFC45 H51 Ge N2 PP 1 21/n 124.0628; 12.8152; 25.4632
90; 94.7933; 90
7824.62Li, Zhongshu; Chen, Xiaodan; Li, Yaqi; Su, Cheng-Yong; Grützmacher, Hansjörg
N-Heterocyclic carbene phosphaketene adducts as precursors to carbene-phosphinidene adducts and a rearranged π-system.
Chemical communications (Cambridge, England), 2016, 52, 11343-11346
7124967 CIFC160 H164 N8 O1.5 P4 Sn4P -113.0114; 17.0048; 18.7117
111.389; 94.838; 110.638
3498.2Li, Zhongshu; Chen, Xiaodan; Li, Yaqi; Su, Cheng-Yong; Grützmacher, Hansjörg
N-Heterocyclic carbene phosphaketene adducts as precursors to carbene-phosphinidene adducts and a rearranged π-system.
Chemical communications (Cambridge, England), 2016, 52, 11343-11346
7124968 CIFC51 H41 N7 O2P 1 21/c 111.998; 14.423; 21.871
90; 92.101; 90
3782Mosca, Lorenzo; Čejka, Jan; Dolenský, Bohumil; Havlík, Martin; Jakubek, Milan; Kaplánek, Robert; Král, Vladimír; Anzenbacher, Pavel
Bowl-shaped Tröger's bases and their recognition properties.
Chemical communications (Cambridge, England), 2016, 52, 10664-10667
7124969 CIFC69 H52 N8 O4P 1 21/c 121.3761; 12.4047; 21.2424
90; 113.697; 90
5157.8Mosca, Lorenzo; Čejka, Jan; Dolenský, Bohumil; Havlík, Martin; Jakubek, Milan; Kaplánek, Robert; Král, Vladimír; Anzenbacher, Pavel
Bowl-shaped Tröger's bases and their recognition properties.
Chemical communications (Cambridge, England), 2016, 52, 10664-10667
7124970 CIFC46 H38 Cl2 N6P -117.9422; 18.3629; 20.9128
107.088; 100.483; 116.305
5498.3Mosca, Lorenzo; Čejka, Jan; Dolenský, Bohumil; Havlík, Martin; Jakubek, Milan; Kaplánek, Robert; Král, Vladimír; Anzenbacher, Pavel
Bowl-shaped Tröger's bases and their recognition properties.
Chemical communications (Cambridge, England), 2016, 52, 10664-10667
7124971 CIFC17 H14 Ag N7 O4I 41/a :231.37; 31.37; 7.8467
90; 90; 90
7721.8Li, Cheng-Peng; Wang, Si; Guo, Wei; Yan, Yan; Du, Miao
Dual structure evolution of a Ag(i) supramolecular framework triggered by anion-exchange: replacement of terminal ligand and switching of network interpenetration degree.
Chemical communications (Cambridge, England), 2016, 52, 11060-11063
7124972 CIFC17 H15 Ag N7 O3.5I 41/a :231.065; 31.065; 8.0003
90; 90; 90
7720.6Li, Cheng-Peng; Wang, Si; Guo, Wei; Yan, Yan; Du, Miao
Dual structure evolution of a Ag(i) supramolecular framework triggered by anion-exchange: replacement of terminal ligand and switching of network interpenetration degree.
Chemical communications (Cambridge, England), 2016, 52, 11060-11063
7124973 CIFC19 H14 Ag F3 N6 O3P 42/n :222.8131; 22.8131; 7.7879
90; 90; 90
4053.1Li, Cheng-Peng; Wang, Si; Guo, Wei; Yan, Yan; Du, Miao
Dual structure evolution of a Ag(i) supramolecular framework triggered by anion-exchange: replacement of terminal ligand and switching of network interpenetration degree.
Chemical communications (Cambridge, England), 2016, 52, 11060-11063
7124974 CIFC29 H41 F6 Fe N4 O2 PP 1 21/c 121.0286; 8.7204; 17.6555
90; 99.237; 90
3195.6Kwon, Yubin M.; Delgado, Mayra; Zakharov, Lev N.; Seda, Takele; Gilbertson, John D.
Nitrite reduction by a pyridinediimine complex with a proton-responsive secondary coordination sphere.
Chemical communications (Cambridge, England), 2016, 52, 11016-11019
7124975 CIFC29.5 H41 Cl Fe N4 O2P 1 21/c 19.6385; 13.7609; 23.41
90; 92.164; 90
3102.8Kwon, Yubin M.; Delgado, Mayra; Zakharov, Lev N.; Seda, Takele; Gilbertson, John D.
Nitrite reduction by a pyridinediimine complex with a proton-responsive secondary coordination sphere.
Chemical communications (Cambridge, England), 2016, 52, 11016-11019
7124976 CIFC29 H44 Br3 Fe N5P -110.0331; 13.3181; 14.1
64.813; 81.091; 81.046
1675.9Kwon, Yubin M.; Delgado, Mayra; Zakharov, Lev N.; Seda, Takele; Gilbertson, John D.
Nitrite reduction by a pyridinediimine complex with a proton-responsive secondary coordination sphere.
Chemical communications (Cambridge, England), 2016, 52, 11016-11019
7124977 CIFC27 H40 F6 Fe N6 O2 PP -18.4876; 12.8367; 16.0181
112.855; 90.553; 99.918
1578.52Kwon, Yubin M.; Delgado, Mayra; Zakharov, Lev N.; Seda, Takele; Gilbertson, John D.
Nitrite reduction by a pyridinediimine complex with a proton-responsive secondary coordination sphere.
Chemical communications (Cambridge, England), 2016, 52, 11016-11019
7124978 CIFC25 H25 Cl Hg N2 O3P -19.4629; 11.35; 12.3473
103.843; 109.616; 99.745
1166.87Hong, Jung-Ho; Kurapati, Sathish; Jo, Yunhee; Shin, June-Ho; Cho, Dong-Gyu
Accelerated hydration reaction of an unsymmetrical tolan evidenced by a Hg(ii)-trapped macrocycle and its application as a Hg(ii)-selective indicator.
Chemical communications (Cambridge, England), 2016, 52, 10759-10762
7124979 CIFC127 H139 Cd2 Cr4 N8 Na5 O42F 2 2 240.623; 41.321; 51.868
90; 90; 90
87065Xia, Qingchun; Liu, Yan; Li, Zijian; Gong, Wei; Cui, Yong
A Cr(salen)-based metal-organic framework as a versatile catalyst for efficient asymmetric transformations.
Chemical communications (Cambridge, England), 2016, 52, 13167-13170
7124980 CIFC8 H8 N2 O4P 1 21/c 14.7242; 12.369; 13.831
90; 82.466; 90
801.2Kennedy, Stuart R.; Miquelot, Adeline; Aguilar, Juan A.; Steed, Jonathan W.
Trimeric cyclamers: solution aggregation and high Z' crystals based on guest structure and basicity.
Chemical communications (Cambridge, England), 2016, 52, 11846-11849
7124981 CIFC12 H16 N2 O5P 1 21/c 122.309; 19.1478; 9.01
90; 91.398; 90
3847.6Kennedy, Stuart R.; Miquelot, Adeline; Aguilar, Juan A.; Steed, Jonathan W.
Trimeric cyclamers: solution aggregation and high Z' crystals based on guest structure and basicity.
Chemical communications (Cambridge, England), 2016, 52, 11846-11849
7124982 CIFC10 H11 N3 O4P -113.3689; 15.143; 18.786
77.079; 74.563; 63.839
3265.5Kennedy, Stuart R.; Miquelot, Adeline; Aguilar, Juan A.; Steed, Jonathan W.
Trimeric cyclamers: solution aggregation and high Z' crystals based on guest structure and basicity.
Chemical communications (Cambridge, England), 2016, 52, 11846-11849
7124983 CIFC11 H14 N2 O5P 1 21/n 114.6759; 31.285; 15.9269
90; 99.324; 90
7216Kennedy, Stuart R.; Miquelot, Adeline; Aguilar, Juan A.; Steed, Jonathan W.
Trimeric cyclamers: solution aggregation and high Z' crystals based on guest structure and basicity.
Chemical communications (Cambridge, England), 2016, 52, 11846-11849
7124984 CIFC12.2 H11.5 N2.7 O5.4P -4 21 c17.707; 17.707; 7.3732
90; 90; 90
2311.8Kennedy, Stuart R.; Miquelot, Adeline; Aguilar, Juan A.; Steed, Jonathan W.
Trimeric cyclamers: solution aggregation and high Z' crystals based on guest structure and basicity.
Chemical communications (Cambridge, England), 2016, 52, 11846-11849
7124985 CIFC20 H22 N4 O4P -14.5668; 20.531; 20.9009
76.149; 88.228; 88.156
1901.2Kennedy, Stuart R.; Miquelot, Adeline; Aguilar, Juan A.; Steed, Jonathan W.
Trimeric cyclamers: solution aggregation and high Z' crystals based on guest structure and basicity.
Chemical communications (Cambridge, England), 2016, 52, 11846-11849
7124986 CIFC8 H10 N2 O5P 21 21 214.5426; 10.729; 18.692
90; 90; 90
911Kennedy, Stuart R.; Miquelot, Adeline; Aguilar, Juan A.; Steed, Jonathan W.
Trimeric cyclamers: solution aggregation and high Z' crystals based on guest structure and basicity.
Chemical communications (Cambridge, England), 2016, 52, 11846-11849
7124987 CIFC28 H24 N4 O4 Pd2P 1 21/c 113.9426; 18.5793; 18.8456
90; 146.18; 90
2717.16Monas, Andrea; Užarević, Krunoslav; Halasz, Ivan; Kulcsár, Marina Juribašić; Ćurić, Manda
Vapour-induced solid-state C-H bond activation for the clean synthesis of an organopalladium biothiol sensor.
Chemical communications (Cambridge, England), 2016, 52, 12960-12963
7124988 CIFC28 H24 N4 O4 Pd2P b c a15.7028; 12.1884; 27.7307
90; 90; 90
5307.4Monas, Andrea; Užarević, Krunoslav; Halasz, Ivan; Kulcsár, Marina Juribašić; Ćurić, Manda
Vapour-induced solid-state C-H bond activation for the clean synthesis of an organopalladium biothiol sensor.
Chemical communications (Cambridge, England), 2016, 52, 12960-12963
7124989 CIFC30 H36 B2 Br4 Fe N6 O6C 1 2/c 126.14; 8.4019; 18.4972
90; 117.658; 90
3598.3Cecot, Giacomo; Alameddine, Bassam; Prior, Stéphanie; Zorzi, Rita De; Geremia, Silvano; Scopelliti, Rosario; Fadaei, Farzaneh T.; Solari, Euro; Severin, Kay
Large heterometallic coordination cages with gyrobifastigium-like geometry.
Chemical communications (Cambridge, England), 2016, 52, 11243-11246
7124990 CIFC50 H52 B2 Fe N10 O6P 1 21/c 18.84673; 38.91135; 14.15673
90; 105.312; 90
4700.3Cecot, Giacomo; Alameddine, Bassam; Prior, Stéphanie; Zorzi, Rita De; Geremia, Silvano; Scopelliti, Rosario; Fadaei, Farzaneh T.; Solari, Euro; Severin, Kay
Large heterometallic coordination cages with gyrobifastigium-like geometry.
Chemical communications (Cambridge, England), 2016, 52, 11243-11246
7124991 CIFC408 H368 B8 F48 Fe4 N40 O72 P16 Pt8 S16P -128.3614; 28.8276; 41.0379
101.861; 92.914; 104.12
31663Cecot, Giacomo; Alameddine, Bassam; Prior, Stéphanie; Zorzi, Rita De; Geremia, Silvano; Scopelliti, Rosario; Fadaei, Farzaneh T.; Solari, Euro; Severin, Kay
Large heterometallic coordination cages with gyrobifastigium-like geometry.
Chemical communications (Cambridge, England), 2016, 52, 11243-11246
7124992 CIFC24 H24 B2 Br4 Fe N6 O6I 1 2/a 114.7088; 12.8848; 18.6454
90; 102.859; 90
3445.05Cecot, Giacomo; Alameddine, Bassam; Prior, Stéphanie; Zorzi, Rita De; Geremia, Silvano; Scopelliti, Rosario; Fadaei, Farzaneh T.; Solari, Euro; Severin, Kay
Large heterometallic coordination cages with gyrobifastigium-like geometry.
Chemical communications (Cambridge, England), 2016, 52, 11243-11246
7124993 CIFC44 H40 B2 Fe N10 O6P 1 21/c 19.4866; 10.6979; 47.959
90; 94.425; 90
4852.7Cecot, Giacomo; Alameddine, Bassam; Prior, Stéphanie; Zorzi, Rita De; Geremia, Silvano; Scopelliti, Rosario; Fadaei, Farzaneh T.; Solari, Euro; Severin, Kay
Large heterometallic coordination cages with gyrobifastigium-like geometry.
Chemical communications (Cambridge, England), 2016, 52, 11243-11246
7124994 CIFC95 H34 O2P 1 21/c 110.8278; 30.7175; 16.9665
90; 102.171; 90
5516.3Vidal, Sara; Izquierdo, Marta; Law, Wai Kit; Jiang, Kui; Filippone, Salvatore; Perles, Josefina; Yan, He; Martín, Nazario
Photochemical site-selective synthesis of [70]methanofullerenes.
Chemical communications (Cambridge, England), 2016, 52, 12733-12736
7124995 CIFC140 H136 K4 O11P -113.3928; 15.4263; 15.9182
72.759; 71.007; 66.158
2792.2Sumy, Daniel P.; Finke, Aaron D.; Whalley, Adam C.
The reductive aromatization of tridecacyclene.
Chemical communications (Cambridge, England), 2016, 52, 12368-12371
7124996 CIFC93 H128.56 O3 UP 1 21/c 116.6756; 37.752; 12.3496
90; 93.136; 90
7762.9Hoerger, Christopher J.; La Pierre, Henry S.; Maron, Laurent; Scheurer, Andreas; Heinemann, Frank W.; Meyer, Karsten
Reductive disproportionation of nitric oxide mediated by low-valent uranium.
Chemical communications (Cambridge, England), 2016, 52, 10854-10857
7124997 CIFC81 H105 O4 UP 1 21/c 121.4453; 13.7404; 25.313
90; 119.622; 90
6484.1Hoerger, Christopher J.; La Pierre, Henry S.; Maron, Laurent; Scheurer, Andreas; Heinemann, Frank W.; Meyer, Karsten
Reductive disproportionation of nitric oxide mediated by low-valent uranium.
Chemical communications (Cambridge, England), 2016, 52, 10854-10857
7124998 CIFC9 H20 B N O2I b a 210.1195; 29.385; 7.4892
90; 90; 90
2227Romero, Erik A.; Peltier, Jesse L.; Jazzar, Rodolphe; Bertrand, Guy
Catalyst-free dehydrocoupling of amines, alcohols, and thiols with pinacol borane and 9-borabicyclononane (9-BBN).
Chemical communications (Cambridge, England), 2016, 52, 10563-10565
7124999 CIFC24 H18 Br PP 1 21/n 110.9091; 8.4128; 20.1396
90; 94.569; 90
1842.46Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125000 CIFC24 H18 As BrP 1 21/n 110.8919; 8.4344; 20.3175
90; 94.242; 90
1861.39Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125001 CIFC24 H18 Br SbP 1 21/n 110.9265; 8.5022; 20.5734
90; 93.534; 90
1907.62Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125002 CIFC33 H29 As TeP 1 21/n 112.0462; 8.7352; 25.0693
90; 98.504; 90
2608.94Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125003 CIFC33 H29 Sb TeP -18.7261; 11.7875; 14.189
79.576; 74.286; 75.358
1349.35Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125004 CIFC28 H26 Cl O P TeP 1 21/c 18.7067; 12.5095; 22.0558
90; 94.318; 90
2395.42Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125005 CIFC25 H20 Cl3 P TeP -18.5366; 11.678; 12.597
89.5; 87.76; 85.74
1251.4Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125006 CIFC48 H36 P2 TeP -111.7394; 12.5066; 14.3469
91.146; 101.003; 117.065
1827.45Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125007 CIFC18 H22 Cl P TeP 1 21/c 114.502; 8.33; 14.464
90; 91.826; 90
1746.4Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125008 CIFC18 H22 Br P TeP 1 21/n 17.786; 13.9267; 16.4054
90; 97.078; 90
1765.3Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125009 CIFC18 H22 I P TeP 1 21/n 17.9634; 14.047; 16.871
90; 99.976; 90
1858.7Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125010 CIFC38 H48 Cl4 I6 P2 Te3C 1 2/c 122.509; 11.4213; 22.101
90; 110.786; 90
5312Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125011 CIFC18 H22 I3 P TeP 1 21/n 19.8954; 15.5322; 14.5588
90; 93.366; 90
2233.8Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125012 CIFC25 H18 F3 O3 P S TeP 1 21/n 18.5859; 13.5523; 20.3142
90; 99.133; 90
2333.77Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125013 CIFC25 H18 As F3 O3 S TeP 1 21/n 18.6484; 13.5162; 20.5103
90; 99.069; 90
2367.55Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125014 CIFC28 H24 F3 O3 S Sb TeC 1 2/c 122.9864; 12.573; 20.1946
90; 115.397; 90
5272.4Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125015 CIFC40 H26 B F15 Na O7 PP 1 21/c 110.0891; 18.9802; 20.8742
90; 93.041; 90
3991.6Kather, Ralf; Rychagova, Elena; Sanz Camacho, Paula; Ashbrook, Sharon E.; Woollins, J. Derek; Robben, Lars; Lork, Enno; Ketkov, Sergey; Beckmann, Jens
Increasing the Brønsted acidity of Ph2PO2H by the Lewis acid B(C6F5)3. Formation of an eight-membered boraphosphinate ring [Ph2POB(C6F5)2O]2.
Chemical communications (Cambridge, England), 2016, 52, 10992-10995
7125016 CIFC440 H572 Au92 S44C 1 2/c 145.325; 28.1243; 88.076
90; 91.544; 90
112233Liao, Lingwen; Chen, Jishi; Wang, Chengming; Zhuang, Shengli; Yan, Nan; Yao, Chuanhao; Xia, Nan; Li, Lingling; Bao, Xiaoli; Wu, Zhikun
Transition-sized Au<sub>92</sub> nanoparticle bridging non-fcc-structured gold nanoclusters and fcc-structured gold nanocrystals.
Chemical communications (Cambridge, England), 2016, 52, 12036-12039
7125017 CIFC15 H20 N2 O2 SP -16.2192; 9.1506; 13.4968
98.63; 96.96; 92.679
752.15Meyer, Andreas Uwe; Berger, Anna Lucia; König, Burkhard
Metal-free C-H sulfonamidation of pyrroles by visible light photoredox catalysis.
Chemical communications (Cambridge, England), 2016, 52, 10918-10921
7125018 CIFC18 H24 N2 O2 SP 1 21/n 110.79743; 13.38129; 11.85342
90; 96.5156; 90
1701.56Meyer, Andreas Uwe; Berger, Anna Lucia; König, Burkhard
Metal-free C-H sulfonamidation of pyrroles by visible light photoredox catalysis.
Chemical communications (Cambridge, England), 2016, 52, 10918-10921
7125019 CIFC19 H20 N2 O2 SP 1 21/c 115.7933; 8.92836; 12.9799
90; 110.209; 90
1717.6Meyer, Andreas Uwe; Berger, Anna Lucia; König, Burkhard
Metal-free C-H sulfonamidation of pyrroles by visible light photoredox catalysis.
Chemical communications (Cambridge, England), 2016, 52, 10918-10921
7125020 CIFC30 H40 N4 O4 S2P 1 21/n 118.0343; 7.581; 23.5816
90; 109.174; 90
3045.18Meyer, Andreas Uwe; Berger, Anna Lucia; König, Burkhard
Metal-free C-H sulfonamidation of pyrroles by visible light photoredox catalysis.
Chemical communications (Cambridge, England), 2016, 52, 10918-10921
7125021 CIFC12 H16 N2 O2 S2P 1 21/c 114.6626; 5.3944; 18.2386
90; 113.435; 90
1323.6Meyer, Andreas Uwe; Berger, Anna Lucia; König, Burkhard
Metal-free C-H sulfonamidation of pyrroles by visible light photoredox catalysis.
Chemical communications (Cambridge, England), 2016, 52, 10918-10921
7125022 CIFC29 H21 Br N2 O4P 21 21 217.08473; 16.7619; 22.085
90; 90; 90
2622.67Wang, Kai-Kai; Wang, Pan; Ouyang, Qin; Du, Wei; Chen, Ying-Chun
Substrate-controlled switchable asymmetric annulations to access polyheterocyclic skeletons.
Chemical communications (Cambridge, England), 2016, 52, 11104-11107
7125023 CIFC23 H17 N3 O2P 21 21 2110.06732; 10.59058; 22.9703
90; 90; 90
2449.06Wang, Kai-Kai; Wang, Pan; Ouyang, Qin; Du, Wei; Chen, Ying-Chun
Substrate-controlled switchable asymmetric annulations to access polyheterocyclic skeletons.
Chemical communications (Cambridge, England), 2016, 52, 11104-11107
7125024 CIFC40 H38.4 Cl4 Cr2 F8 N4 O21.2 Tb2P -19.6481; 11.3861; 13.3598
67.617; 78.339; 87.41
1328.23Langley, Stuart K.; Wielechowski, Daniel P.; Moubaraki, Boujemaa; Murray, Keith S.
Enhancing the magnetic blocking temperature and magnetic coercivity of {CrLn} single-molecule magnets via bridging ligand modification.
Chemical communications (Cambridge, England), 2016, 52, 10976-10979
7125025 CIFC40 H37.2 Cl4 Cr2 Dy2 F8 N4 O20.6P -19.543; 11.414; 13.306
67.56; 77.95; 87.25
1309.3Langley, Stuart K.; Wielechowski, Daniel P.; Moubaraki, Boujemaa; Murray, Keith S.
Enhancing the magnetic blocking temperature and magnetic coercivity of {CrLn} single-molecule magnets via bridging ligand modification.
Chemical communications (Cambridge, England), 2016, 52, 10976-10979
7125026 CIFC40 H37.67 Cl4 Cr2 F8 Ho2 N4 O20.83P -19.667; 11.331; 13.316
67.54; 78.27; 87.69
1318.7Langley, Stuart K.; Wielechowski, Daniel P.; Moubaraki, Boujemaa; Murray, Keith S.
Enhancing the magnetic blocking temperature and magnetic coercivity of {CrLn} single-molecule magnets via bridging ligand modification.
Chemical communications (Cambridge, England), 2016, 52, 10976-10979
7125027 CIFC70 H114 Cr2 Dy2 N4 O23P -111.164; 11.907; 16.534
70.77; 73.76; 82.43
1990.5Langley, Stuart K.; Wielechowski, Daniel P.; Moubaraki, Boujemaa; Murray, Keith S.
Enhancing the magnetic blocking temperature and magnetic coercivity of {CrLn} single-molecule magnets via bridging ligand modification.
Chemical communications (Cambridge, England), 2016, 52, 10976-10979
7125028 CIFC12 H24 B10 O8P 1 21/n 111.7899; 13.5842; 13.728
90; 104.058; 90
2132.78Cao, Ke; Xu, Tao-Tao; Wu, Ji; Jiang, Linhai; Yang, Junxiao
Palladium catalyzed/silver tuned selective mono-/tetra-acetoxylation of o-carboranes via B-H activation.
Chemical communications (Cambridge, England), 2016, 52, 11446-11449
7125029 CIFC20 H32 B10 O8P -112.7205; 13.3454; 16.395
98.928; 92.479; 90.262
2746.7Cao, Ke; Xu, Tao-Tao; Wu, Ji; Jiang, Linhai; Yang, Junxiao
Palladium catalyzed/silver tuned selective mono-/tetra-acetoxylation of o-carboranes via B-H activation.
Chemical communications (Cambridge, England), 2016, 52, 11446-11449
7125030 CIFC6 H18 B10 O2P -17.3484; 7.6219; 12.005
83.262; 88.589; 88.161
667.2Cao, Ke; Xu, Tao-Tao; Wu, Ji; Jiang, Linhai; Yang, Junxiao
Palladium catalyzed/silver tuned selective mono-/tetra-acetoxylation of o-carboranes via B-H activation.
Chemical communications (Cambridge, England), 2016, 52, 11446-11449
7125031 CIFC6 H18 B10 O2P 1 21/n 17.7915; 21.7; 8.0127
90; 94.885; 90
1349.83Cao, Ke; Xu, Tao-Tao; Wu, Ji; Jiang, Linhai; Yang, Junxiao
Palladium catalyzed/silver tuned selective mono-/tetra-acetoxylation of o-carboranes via B-H activation.
Chemical communications (Cambridge, England), 2016, 52, 11446-11449
7125032 CIFC25 H28 F6 N4 O2 P RuC 1 2/c 130.6243; 19.9078; 11.5863
90; 102.813; 90
6887.83Xie, Jianhui; Lo, Po-Kam; Lam, William W. Y.; Man, Wai-Lun; Ma, Li; Yiu, Shek-Man; Lau, Kai-Chung; Lau, Tai-Chu
Oxidation of hydroquinones by a (salen)ruthenium(vi) nitrido complex.
Chemical communications (Cambridge, England), 2016, 52, 11430-11433
7125033 CIFC22 H16 Br Cl N2 OP 21 21 218.048; 9.69; 25.348
90; 90; 90
1976.8Bao, Xiaoze; Wei, Shiqiang; Zou, Liwei; He, Yuli; Xue, Fuzhao; Qu, Jingping; Wang, Baomin
Asymmetric chlorination of 4-substituted pyrazolones catalyzed by natural cinchona alkaloid.
Chemical communications (Cambridge, England), 2016, 52, 11426-11429
7125034 CIFC5.5 H12 F6 N2 O0.5 PC 1 2/c 116.155; 6.7318; 19.587
90; 109.09; 90
2013Regnier, Vianney; Molton, Florian; Philouze, Christian; Martin, David
An air-persistent oxyallyl radical cation with simple di(methyl)amino substituents.
Chemical communications (Cambridge, England), 2016, 52, 11422-11425
7125035 CIFC24 H17 N OP n a 2115.3015; 12.1976; 9.6252
90; 90; 90
1796.5Liu, Ren-Rong; Xu, Teng-Fei; Wang, Yong-Gang; Xiang, Bin; Gao, Jian-Rong; Jia, Yi-Xia
Palladium-catalyzed dearomative arylalkynylation of indoles.
Chemical communications (Cambridge, England), 2016, 52, 13664-13667
7125036 CIFC31 H30 Cl3 F6 N6 O P RuP -110.63; 12.402; 14.118
77.336; 74.113; 79.124
1730.1Ng, Chee Koon; Wu, Jie; Hor, T. S. Andy; Luo, He-Kuan
A binary catalyst system of a cationic Ru-CNC pincer complex with an alkali metal salt for selective hydroboration of carbon dioxide.
Chemical communications (Cambridge, England), 2016, 52, 11842-11845
7125037 CIFC31 H30 Cl4 F6 N5 O2 P RuP b c a16.6675; 11.1422; 38.2172
90; 90; 90
7097.4Ng, Chee Koon; Wu, Jie; Hor, T. S. Andy; Luo, He-Kuan
A binary catalyst system of a cationic Ru-CNC pincer complex with an alkali metal salt for selective hydroboration of carbon dioxide.
Chemical communications (Cambridge, England), 2016, 52, 11842-11845
7125038 CIFC27 H32 Br N3 O6 SP 1 21/n 113.4851; 8.5343; 25.6709
90; 103.401; 90
2873.9Fuentes de Arriba, Ángel L; Simón, Luis; Rubio, Omayra H.; Monleón, Laura M; Alcázar, Victoria; Sanz, Francisca; Raposo, César A; Morán, Joaquín R
A bio-inspired enantioselective small-molecule artificial receptor for β adrenergic agonists and antagonists and its application for enantioselective extraction.
Chemical communications (Cambridge, England), 2016, 52, 12582-12585
7125039 CIFC92 H108 Br2 N10 O15 S2P 1 21 18.3467; 25.1787; 22.297
90; 92.223; 90
4682.4Fuentes de Arriba, Ángel L; Simón, Luis; Rubio, Omayra H.; Monleón, Laura M; Alcázar, Victoria; Sanz, Francisca; Raposo, César A; Morán, Joaquín R
A bio-inspired enantioselective small-molecule artificial receptor for β adrenergic agonists and antagonists and its application for enantioselective extraction.
Chemical communications (Cambridge, England), 2016, 52, 12582-12585
7125040 CIFC44.16 N8 O76 Zr12C 1 2/m 121.28954; 14.55846; 8.10658
90; 84.173; 90
2499.59Waitschat, S.; Reinsch, H.; Stock, N.
Water-based synthesis and characterisation of a new Zr-MOF with a unique inorganic building unit.
Chemical communications (Cambridge, England), 2016, 52, 12698-12701
7125041 CIFC28 H21 Br O3P -17.336; 11.8041; 13.6969
104.265; 98.881; 96.225
1122.36Wu, Ya-Nan; Xu, Ting; Fu, Rong; Wang, Nan-Nan; Hao, Wen-Juan; Wang, Shu-Liang; Li, Guigen; Tu, Shu-Jiang; Jiang, Bo
Dual rhodium/copper catalysis: synthesis of benzo[b]fluorenes and 2-naphthalenylmethanones via de-diazotized cycloadditions.
Chemical communications (Cambridge, England), 2016, 52, 11943-11946

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