Crystallography Open Database

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Searching space group like 'I -4 c 2'

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7121423 CIFC23 H32 B2 Fe N8 O4I -4 c 221.983; 21.983; 28.972
90; 90; 90
14001Shin, Jong Won; Jeong, Ah Rim; Jeoung, Sungeun; Moon, Hoi Ri; Komatsumaru, Yuki; Hayami, Shinya; Moon, Dohyun; Min, Kil Sik
Three-dimensional iron(ii) porous coordination polymer exhibiting carbon dioxide-dependent spin crossover.
Chemical communications (Cambridge, England), 2018, 54, 4262-4265
7121421 CIFC23.75 H24 B2 Fe N8 O1.5I -4 c 222.005; 22.005; 28.943
90; 90; 90
14015Shin, Jong Won; Jeong, Ah Rim; Jeoung, Sungeun; Moon, Hoi Ri; Komatsumaru, Yuki; Hayami, Shinya; Moon, Dohyun; Min, Kil Sik
Three-dimensional iron(ii) porous coordination polymer exhibiting carbon dioxide-dependent spin crossover.
Chemical communications (Cambridge, England), 2018, 54, 4262-4265
7121419 CIFC23.75 H24 B2 Fe N8 O1.5I -4 c 222.012; 22.012; 28.983
90; 90; 90
14043Shin, Jong Won; Jeong, Ah Rim; Jeoung, Sungeun; Moon, Hoi Ri; Komatsumaru, Yuki; Hayami, Shinya; Moon, Dohyun; Min, Kil Sik
Three-dimensional iron(ii) porous coordination polymer exhibiting carbon dioxide-dependent spin crossover.
Chemical communications (Cambridge, England), 2018, 54, 4262-4265
7121420 CIFC23 H24 B2 Fe N8I -4 c 222.018; 22.018; 29.028
90; 90; 90
14073Shin, Jong Won; Jeong, Ah Rim; Jeoung, Sungeun; Moon, Hoi Ri; Komatsumaru, Yuki; Hayami, Shinya; Moon, Dohyun; Min, Kil Sik
Three-dimensional iron(ii) porous coordination polymer exhibiting carbon dioxide-dependent spin crossover.
Chemical communications (Cambridge, England), 2018, 54, 4262-4265
7121422 CIFC25.5 H24 B2 Fe N8 O5I -4 c 222.056; 22.056; 29.005
90; 90; 90
14110Shin, Jong Won; Jeong, Ah Rim; Jeoung, Sungeun; Moon, Hoi Ri; Komatsumaru, Yuki; Hayami, Shinya; Moon, Dohyun; Min, Kil Sik
Three-dimensional iron(ii) porous coordination polymer exhibiting carbon dioxide-dependent spin crossover.
Chemical communications (Cambridge, England), 2018, 54, 4262-4265
4134203 CIFC88 H85 F20 N10 O6.5 Si2I -4 c 225.2251; 25.2251; 32.2322
90; 90; 90
20509.5Shimomura, Keito; Kai, Hiroto; Nakamura, Yuma; Hong, Yongseok; Mori, Shigeki; Miki, Koji; Ohe, Kouichi; Notsuka, Yusuke; Yamaoka, Yoshihisa; Ishida, Masatoshi; Kim, Dongho; Furuta, Hiroyuki
Bis-Metal Complexes of Doubly N-Confused Dioxohexaphyrins as Potential Near Infrared-II Photoacoustic Dyes.
Journal of the American Chemical Society, 2020
7108883 CIFC87 H153 N17 Ni3 O27I -4 c 230.233; 30.233; 22.671
90; 90; 90
20722Ping Ju; Long Jiang; Tong-Bu Lu
An unprecedented dynamic porous metal-organic framework assembled from fivefold interlocked closed nanotubes with selective gas adsorption behaviors
Chemical communications (Cambridge, England), 2013, 49, 1820-1822
7232869 CIFC21 H3 Mn5 N6 O24I -4 c 226.343; 26.343; 37.301
90; 90; 90
25885Zhang, Tao; Ling, Bo-Kai; Hu, Yue-Qiao; Han, Tian; Zheng, Yan-Zhen
An anionic manganese(ii) metal‒organic framework for uranyl adsorption
CrystEngComm, 2019, 21, 3901
4346657 CIFC96 H256 Br14 N6 O32 Ti6I -4 c 224.072; 24.072; 54.827
90; 90; 90
31770Zhang, Guanyun; Hou, Jie; Li, Mingzhong; Tung, Chen-Ho; Wang, Yifeng
Counteranion-Stabilized Titanium(IV) Isopolyoxocationic Clusters Isolated from Water.
Inorganic chemistry, 2016, 55, 4704-4709
4344042 CIFC72 H60 N6 Ni O22 U2I -4 c 226.3865; 26.3865; 47.5157
90; 90; 90
33082.7Thuéry, Pierre; Harrowfield, Jack
Structural Variations in the Uranyl/4,4'-Biphenyldicarboxylate System. Rare Examples of 2D →3D Polycatenated Uranyl-Organic Networks.
Inorganic chemistry, 2015, 54, 8093-8102
1552822 CIFC178 H264 Cl8 O26 Y4I -4 c 225.8909; 25.8909; 59.13
90; 90; 90
39637Chen, Changjuan; Bai, Zhiyong; Cui, Yaqin; Cong, Yong; Pan, Xiaobo; Wu, Jincai
ppm-Level Thermally Switchable Yttrium Phenoxide Catalysts for Moisture-Insensitive and Controllably Immortal Polymerization of rac-Lactide
Macromolecules, 2018, 51, 6800
4128100 CIFC68 H77 Co2 N4 O6I -4 c 230.049; 30.049; 53.137
90; 90; 90
47980Li, Bao; Zhao, Yu-Meng; Kirchon, Angelo; Pang, Jian-Dong; Yang, Xin-Yu; Zhuang, Gui-Lin; Zhou, Hong-Cai
Unconventional Method for Fabricating Valence Tautomeric Materials: Integrating Redox Center within a Metal-Organic Framework.
Journal of the American Chemical Society, 2019, 141, 6822-6826
1550921 CIFC5 H9.33 N1.33 O4 S20 Sn10I -4 c 229.1874; 29.1874; 57.5222
90; 90; 90
49003.4Dehnen, Stefanie Susanne; Peters, Bertram; Santner, Silke; Donsbach, Carsten; Smarsly, Bernd; Voepel, Pascal
Ionic liquid cations as methylation agent for extremely weak chalcogenido metalate nucleophiles
Chemical Science, 2019
4128101 CIFC68 H77 Co2 N4 O6I -4 c 230.63; 30.63; 53.381
90; 90; 90
50082Li, Bao; Zhao, Yu-Meng; Kirchon, Angelo; Pang, Jian-Dong; Yang, Xin-Yu; Zhuang, Gui-Lin; Zhou, Hong-Cai
Unconventional Method for Fabricating Valence Tautomeric Materials: Integrating Redox Center within a Metal-Organic Framework.
Journal of the American Chemical Society, 2019, 141, 6822-6826
4128102 CIFC68 H77 Co2 N4 O6I -4 c 231.034; 31.034; 53.217
90; 90; 90
51254Li, Bao; Zhao, Yu-Meng; Kirchon, Angelo; Pang, Jian-Dong; Yang, Xin-Yu; Zhuang, Gui-Lin; Zhou, Hong-Cai
Unconventional Method for Fabricating Valence Tautomeric Materials: Integrating Redox Center within a Metal-Organic Framework.
Journal of the American Chemical Society, 2019, 141, 6822-6826

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