Crystallography Open Database

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Searching journal of publication like 'Nanoscale' volume of publication is 11

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1550539 CIFC72 H6 Cl6P -19.8783; 9.9409; 12.3344
70.99; 75.17; 63.05
1012.3Lei, Yilong; Wang, Shaoyan; Lai, Zhuangchai; Yao, Xin; Zhao, Yanli; Zhang, Hua; Chen, Hongyu
Two-dimensional C<sub>60</sub> nano-meshes via crystal transformation.
Nanoscale, 2019, 11, 8692-8698
1550737 CIFBi3 Cl16 Rb7P -3 1 c7.5561; 7.5561; 34.3002
90; 90; 120
1695.99Xie, Jie-Ling; Huang, Zhao-Qian; Wang, Bin; Chen, Wei-Jun; Lu, Wen-Xiu; Liu, Xin; Song, Jun-Ling
New lead-free perovskite Rb<sub>7</sub>Bi<sub>3</sub>Cl<sub>16</sub> nanocrystals with blue luminescence and excellent moisture-stability.
Nanoscale, 2019, 11, 6719-6726
1550847 CIFC29 H24 N2 O2P 1 21/c 110.8798; 11.8215; 35.5224
90; 90.737; 90
4568.4Chen, Sin-Yu; Chiu, Ya-Wen; Liou, Guey-Sheng
Substituent effects of AIE-active α-cyanostilbene-containing triphenylamine derivatives on electrofluorochromic behavior.
Nanoscale, 2019, 11, 8597-8603
1550848 CIFC27 H20 N2P 1 21/n 116.9323; 6.6891; 19.8297
90; 111.138; 90
2094.83Chen, Sin-Yu; Chiu, Ya-Wen; Liou, Guey-Sheng
Substituent effects of AIE-active α-cyanostilbene-containing triphenylamine derivatives on electrofluorochromic behavior.
Nanoscale, 2019, 11, 8597-8603
1550849 CIFC29 H23 Br N2 O2P -111.2848; 12.4618; 17.9846
76.742; 78.065; 83.32
2402.22Chen, Sin-Yu; Chiu, Ya-Wen; Liou, Guey-Sheng
Substituent effects of AIE-active α-cyanostilbene-containing triphenylamine derivatives on electrofluorochromic behavior.
Nanoscale, 2019, 11, 8597-8603
1550890 CIFC18 H25 Cu N5 O8P -19.2542; 10.276; 12.6302
66.49; 85.829; 85.602
1096.97Mingabudinova, Leila R.; Zalogina, Anastasiia S.; Krasilin, Andrei A.; Petrova, Margarita I.; Trofimov, Pavel; Mezenov, Yuri A.; Ubyivovk, Evgeniy V.; Lönnecke, Peter; Nominé, Alexandre; Ghanbaja, Jaafar; Belmonte, Thierry; Milichko, Valentin A.
Laser printing of optically resonant hollow crystalline carbon nanostructures from 1D and 2D metal-organic frameworks.
Nanoscale, 2019, 11, 10155-10159
1550891 CIFC32 H44 Cu N10 O10P 1 21/n 115.5944; 15.2643; 15.7761
90; 90.224; 90
3755.28Mingabudinova, Leila R.; Zalogina, Anastasiia S.; Krasilin, Andrei A.; Petrova, Margarita I.; Trofimov, Pavel; Mezenov, Yuri A.; Ubyivovk, Evgeniy V.; Lönnecke, Peter; Nominé, Alexandre; Ghanbaja, Jaafar; Belmonte, Thierry; Milichko, Valentin A.
Laser printing of optically resonant hollow crystalline carbon nanostructures from 1D and 2D metal-organic frameworks.
Nanoscale, 2019, 11, 10155-10159
1551313 CIFC13 H27 N O6P 1 21 14.957; 5.007; 30.6
90; 92.98; 90
758.5Chalard, Anaïs; Joseph, Pierre; Souleille, Sandrine; Lonetti, Barbara; Saffon-Merceron, Nathalie; Loubinoux, Isabelle; Vaysse, Laurence; Malaquin, Laurent; Fitremann, Juliette
Wet spinning and radial self-assembly of a carbohydrate low molecular weight gelator into well organized hydrogel filaments.
Nanoscale, 2019, 11, 15043-15056
1551410 CIFC128 H56 Dy Er2 Ho0 N5 NiC 1 2/c 125.17; 15.03; 39.41
90; 95.16; 90
14849Schlesier, C.; Liu, F.; Dubrovin, V.; Spree, L.; Büchner, B; Avdoshenko, S. M.; Popov, A. A.
Mixed dysprosium-lanthanide nitride clusterfullerenes DyM<sub>2</sub>N@C<sub>80</sub>-I<sub>h</sub> and Dy<sub>2</sub>MN@C<sub>80</sub>-I<sub>h</sub> (M = Gd, Er, Tm, and Lu): synthesis, molecular structure, and quantum motion of the endohedral nitrogen atom.
Nanoscale, 2019, 11, 13139-13153
1551411 CIFC128 H56 Dy Gd2 N5 NiC 1 2/c 125.23; 15.05; 39.41
90; 95.27; 90
14901Schlesier, C.; Liu, F.; Dubrovin, V.; Spree, L.; Büchner, B; Avdoshenko, S. M.; Popov, A. A.
Mixed dysprosium-lanthanide nitride clusterfullerenes DyM<sub>2</sub>N@C<sub>80</sub>-I<sub>h</sub> and Dy<sub>2</sub>MN@C<sub>80</sub>-I<sub>h</sub> (M = Gd, Er, Tm, and Lu): synthesis, molecular structure, and quantum motion of the endohedral nitrogen atom.
Nanoscale, 2019, 11, 13139-13153
1551477 CIFC48 H32 F2 N4C 1 2 117.1059; 14.9921; 14.7772
90; 95.317; 90
3773.36Man, Zhongwei; Lv, Zheng; Xu, Zhenzhen; Cui, Hongtu; Liao, Qing; Zheng, Lemin; Jin, Xue; He, Qihua; Fu, Hongbing
Organic nanoparticles with ultrahigh stimulated emission depletion efficiency for low-power STED nanoscopy.
Nanoscale, 2019, 11, 12990-12996
1551521 CIFC18 H19 N O2P 1 21/n 18.2418; 16.336; 11.361
90; 103.266; 90
1488.8Meher, Niranjan; Iyer, Parameswar Krishnan
Functional group engineering in naphthalimides: a conceptual insight to fine-tune the supramolecular self-assembly and condensed state luminescence.
Nanoscale, 2019, 11, 13233-13242
1551522 CIFC24 H21 F2 N O2P 1 21/c 114.4864; 7.2999; 19.0729
90; 92.947; 90
2014.3Meher, Niranjan; Iyer, Parameswar Krishnan
Functional group engineering in naphthalimides: a conceptual insight to fine-tune the supramolecular self-assembly and condensed state luminescence.
Nanoscale, 2019, 11, 13233-13242
1551523 CIFC24 H22 F N O2P -17.9798; 8.9908; 14.1265
75.043; 80.201; 79.756
955.29Meher, Niranjan; Iyer, Parameswar Krishnan
Functional group engineering in naphthalimides: a conceptual insight to fine-tune the supramolecular self-assembly and condensed state luminescence.
Nanoscale, 2019, 11, 13233-13242
1551524 CIFC25 H25 N O3C 1 2/c 130.15; 9.1044; 14.8046
90; 94.49; 90
4051.4Meher, Niranjan; Iyer, Parameswar Krishnan
Functional group engineering in naphthalimides: a conceptual insight to fine-tune the supramolecular self-assembly and condensed state luminescence.
Nanoscale, 2019, 11, 13233-13242
1551525 CIFC24 H23 N O3P -17.7872; 8.7869; 15.0163
102.882; 96.881; 92.192
992.18Meher, Niranjan; Iyer, Parameswar Krishnan
Functional group engineering in naphthalimides: a conceptual insight to fine-tune the supramolecular self-assembly and condensed state luminescence.
Nanoscale, 2019, 11, 13233-13242
1551526 CIFC24 H22 Cl N O2P -17.9984; 9.3801; 13.833
76.64; 80.682; 79.49
985Meher, Niranjan; Iyer, Parameswar Krishnan
Functional group engineering in naphthalimides: a conceptual insight to fine-tune the supramolecular self-assembly and condensed state luminescence.
Nanoscale, 2019, 11, 13233-13242
1551818 CIFC128 H56 Er3 N5 Ni S0C 1 2/m 125.302; 15.15; 19.79
90; 95.315; 90
7553.4Hu, Shuaifeng; Zhao, Pei; Shen, Wangqiang; Yu, Pengyuan; Huang, Wenhuan; Ehara, Masahiro; Xie, Yunpeng; Akasaka, Takeshi; Lu, Xing
Crystallographic characterization of Er<sub>3</sub>N@C<sub>2n</sub> (2n = 80, 82, 84, 88): the importance of a planar Er<sub>3</sub>N cluster.
Nanoscale, 2019, 11, 13415-13422
1551819 CIFC130 H56 Er3 N5 Ni S0C 1 2/m 125.548; 15.259; 19.989
90; 95.273; 90
7759Hu, Shuaifeng; Zhao, Pei; Shen, Wangqiang; Yu, Pengyuan; Huang, Wenhuan; Ehara, Masahiro; Xie, Yunpeng; Akasaka, Takeshi; Lu, Xing
Crystallographic characterization of Er<sub>3</sub>N@C<sub>2n</sub> (2n = 80, 82, 84, 88): the importance of a planar Er<sub>3</sub>N cluster.
Nanoscale, 2019, 11, 13415-13422
1551820 CIFC128 H56 Er3 N5 Ni S0C 1 2/m 125.309; 15.149; 19.789
90; 95.267; 90
7555Hu, Shuaifeng; Zhao, Pei; Shen, Wangqiang; Yu, Pengyuan; Huang, Wenhuan; Ehara, Masahiro; Xie, Yunpeng; Akasaka, Takeshi; Lu, Xing
Crystallographic characterization of Er<sub>3</sub>N@C<sub>2n</sub> (2n = 80, 82, 84, 88): the importance of a planar Er<sub>3</sub>N cluster.
Nanoscale, 2019, 11, 13415-13422

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