Crystallography Open Database

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Searching journal of publication like 'ACS applied materials & interfaces' volume of publication is 12

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4517301 CIFC24 H12 Cu2 O10 SeR -3 m :H18.756; 18.756; 37.339
90; 90; 120
11376Dong, Qiubing; Guo, Yanan; Cao, Haifei; Wang, Suna; Matsuda, Ryotaro; Duan, Jingui
Accelerated C<sub>2</sub>H<sub>2</sub>/CO<sub>2</sub> Separation by a Se-Functionalized Porous Coordination Polymer with Low Binding Energy.
ACS applied materials & interfaces, 2020, 12, 3764-3772
4517313 CIFC83 H76 F5 N4 O3 S4P -111.2531; 19.4921; 19.6596
96.865; 95.807; 92.809
4251.2Feng, Shiyu; Li, Miao; Tang, Ningning; Wang, Xiaodong; Huang, Hao; Ran, Guangliu; Liu, Yahui; Xie, Zengqi; Zhang, Wenkai; Bo, Zhishan
Regulating the Packing of Non-Fullerene Acceptors via Multiple Noncovalent Interactions for Enhancing the Performance of Organic Solar Cells.
ACS applied materials & interfaces, 2020, 12, 4638-4648
4517314 CIFC91.94 H103.54 F0.34 N4 O3.66 S4P -112.6483; 12.9721; 14.7724
105.314; 99.476; 116.269
1982.13Feng, Shiyu; Li, Miao; Tang, Ningning; Wang, Xiaodong; Huang, Hao; Ran, Guangliu; Liu, Yahui; Xie, Zengqi; Zhang, Wenkai; Bo, Zhishan
Regulating the Packing of Non-Fullerene Acceptors via Multiple Noncovalent Interactions for Enhancing the Performance of Organic Solar Cells.
ACS applied materials & interfaces, 2020, 12, 4638-4648
4517315 CIFB10 Cl2 O18 Sr4P n n 211.302; 11.408; 6.494
90; 90; 90
837.3Wang, Zujian; He, Jiangang; Hu, Bing; Shan, Pai; Xiong, Zheyao; Su, Rongbing; He, Chao; Yang, Xiaoming; Long, Xifa
Ca<sub>2</sub>B<sub>5</sub>O<sub>9</sub>Cl and Sr<sub>2</sub>B<sub>5</sub>O<sub>9</sub>Cl: Nonlinear Optical Crystals with Deep-Ultraviolet Transparency Windows.
ACS applied materials & interfaces, 2020, 12, 4632-4637
4517316 CIFB10 Ca4 Cl2 O18P n n 211.1369; 11.2626; 6.2995
90; 90; 90
790.15Wang, Zujian; He, Jiangang; Hu, Bing; Shan, Pai; Xiong, Zheyao; Su, Rongbing; He, Chao; Yang, Xiaoming; Long, Xifa
Ca<sub>2</sub>B<sub>5</sub>O<sub>9</sub>Cl and Sr<sub>2</sub>B<sub>5</sub>O<sub>9</sub>Cl: Nonlinear Optical Crystals with Deep-Ultraviolet Transparency Windows.
ACS applied materials & interfaces, 2020, 12, 4632-4637
4517419 CIFC26 H4 F14 S2P -17.5177; 7.727; 11.325
72.545; 77.25; 63.092
556.83Sosorev, Andrey Yu; Trukhanov, Vasiliy A.; Maslennikov, Dmitry R.; Borshchev, Oleg V.; Polyakov, Roman A.; Skorotetcky, Maxim S.; Surin, Nikolay M.; Kazantsev, Maxim S.; Dominskiy, Dmitry I.; Tafeenko, Viktor A.; Ponomarenko, Sergey A.; Paraschuk, Dmitry Yu
Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices.
ACS applied materials & interfaces, 2020, 12, 9507-9519
4517420 CIFC26 H14 F4 S2P c a 2143.582; 5.8661; 7.7244
90; 90; 90
1974.79Sosorev, Andrey Yu; Trukhanov, Vasiliy A.; Maslennikov, Dmitry R.; Borshchev, Oleg V.; Polyakov, Roman A.; Skorotetcky, Maxim S.; Surin, Nikolay M.; Kazantsev, Maxim S.; Dominskiy, Dmitry I.; Tafeenko, Viktor A.; Ponomarenko, Sergey A.; Paraschuk, Dmitry Yu
Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices.
ACS applied materials & interfaces, 2020, 12, 9507-9519
4517421 CIFC26 H8 F10 S2C 1 c 17.342; 25.736; 11.628
90; 96.3; 90
2183.9Sosorev, Andrey Yu; Trukhanov, Vasiliy A.; Maslennikov, Dmitry R.; Borshchev, Oleg V.; Polyakov, Roman A.; Skorotetcky, Maxim S.; Surin, Nikolay M.; Kazantsev, Maxim S.; Dominskiy, Dmitry I.; Tafeenko, Viktor A.; Ponomarenko, Sergey A.; Paraschuk, Dmitry Yu
Fluorinated Thiophene-Phenylene Co-Oligomers for Optoelectronic Devices.
ACS applied materials & interfaces, 2020, 12, 9507-9519
4517454 CIFC104.5 H98 N4 S3P 1 21 116.045; 34.887; 16.55
90; 114.68; 90
8418Li, Panpan; Chan, Chin-Yiu; Lai, Shiu-Lun; Chan, Hing; Leung, Ming-Yi; Hong, Eugene Yau-Hin; Li, Jingwen; Wu, Hongbin; Chan, Mei-Yee; Yam, Vivian Wing-Wah
Three-Dimensional Spirothienoquinoline-Based Small Molecules for Organic Photovoltaic and Organic Resistive Memory Applications.
ACS applied materials & interfaces, 2020, 12, 11865-11875
4517500 CIFC26 H18 Ag F6 N4 SbP 1 21/n 114.1795; 8.7989; 20.5217
90; 102.312; 90
2501.48Li, Cheng-Peng; Zhou, Hang; Chen, Jing; Wang, Jia-Jun; Du, Miao; Zhou, Wuzong
A Highly Efficient Coordination Polymer for Selective Trapping and Sensing of Perrhenate/Pertechnetate.
ACS applied materials & interfaces, 2020, 12, 15246-15254
4517501 CIFC26 H18 Ag N4 O4 ReP 1 21/n 114.3428; 8.6193; 20.253
90; 101.798; 90
2450.88Li, Cheng-Peng; Zhou, Hang; Chen, Jing; Wang, Jia-Jun; Du, Miao; Zhou, Wuzong
A Highly Efficient Coordination Polymer for Selective Trapping and Sensing of Perrhenate/Pertechnetate.
ACS applied materials & interfaces, 2020, 12, 15246-15254
4517562 CIFC231 H132 Eu6 O32C 1 2/m 136.341; 36.43; 25.851
90; 90.192; 90
34224Duan, Zhigang; Li, Yue; Xiao, Xue; Huang, Xiaoli; Li, Xiaoteng; Li, Yiyang; Zhang, Chong; Zhang, Hang; Li, Lin; Lin, Zhihua; Zhao, Yonggang; Huang, Wei
Interpenetrated Metal-Organic Frameworks with <b>ftw</b> Topology and Versatile Functions.
ACS applied materials & interfaces, 2020, 12, 18715-18722
4517563 CIFC231 H144 O32 Zr6R -3 m :H35.6432; 35.6432; 43.654
90; 90; 120
48029Duan, Zhigang; Li, Yue; Xiao, Xue; Huang, Xiaoli; Li, Xiaoteng; Li, Yiyang; Zhang, Chong; Zhang, Hang; Li, Lin; Lin, Zhihua; Zhao, Yonggang; Huang, Wei
Interpenetrated Metal-Organic Frameworks with <b>ftw</b> Topology and Versatile Functions.
ACS applied materials & interfaces, 2020, 12, 18715-18722
4517569 CIFC36 H16 N4 S2P -17.3777; 9.654; 10.051
72.698; 87.979; 70.408
642.3Jin, Jianqun; Wu, Shanyu; Ma, Yudong; Dong, Caiqiao; Wang, Wei; Liu, Xitong; Xu, Haixiao; Long, Guankui; Zhang, Mingtao; Zhang, Jing; Huang, Wei
Nucleation Control-Triggering Cocrystal Polymorphism of Charge-Transfer Complexes Differing in Physical and Electronic Properties.
ACS applied materials & interfaces, 2020, 12, 19718-19726
4517570 CIFC36.16 H16 N4 S2I 1 2/a 111.9205; 16.126; 13.885
90; 107.673; 90
2543.1Jin, Jianqun; Wu, Shanyu; Ma, Yudong; Dong, Caiqiao; Wang, Wei; Liu, Xitong; Xu, Haixiao; Long, Guankui; Zhang, Mingtao; Zhang, Jing; Huang, Wei
Nucleation Control-Triggering Cocrystal Polymorphism of Charge-Transfer Complexes Differing in Physical and Electronic Properties.
ACS applied materials & interfaces, 2020, 12, 19718-19726
4517662 CIFC30 H28 N6P n n m22.0548; 8.5264; 6.69588
90; 90; 90
1259.15Uekusa, Tomoki; Sato, Ryonosuke; Yoo, Dongho; Kawamoto, Tadashi; Mori, Takehiko
Transistor Characteristics of Charge-Transfer Complexes Observed across a Neutral-Ionic Transition.
ACS applied materials & interfaces, 2020, 12, 24174-24183
4517663 CIFC32 H25 N2 O9 ZnP -111.43; 11.4436; 12.7817
111.421; 109.215; 94.014
1434.85Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517664 CIFC32 H30 N2 O7 ZnP -111.509; 12.032; 12.314
113.678; 104.048; 90.19
1505.2Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517665 CIFC16 H11 F3 N O2 Zn0.5C 1 2/c 129.1423; 5.7957; 18.3519
90; 102.93; 90
3021.04Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517666 CIFC32 H29 N3 O6 ZnP -18.2776; 9.6847; 20.7439
97.158; 92.395; 114.431
1494.22Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517667 CIFC8 H8 N O2 Zn0.5P 1 2/n 19.5875; 5.6958; 16.0243
90; 97.841; 90
866.88Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517668 CIFC27 H23 N O9 ZnP -17.8226; 12.6076; 13.0421
84.483; 85.003; 76.073
1239.94Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517669 CIFC36 H24 N O12 Zn1.5P -17.9189; 12.9658; 16.808
103.514; 99.627; 97.373
1628.9Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517670 CIFC28 H22 N2 O8 ZnP -17.6701; 11.3348; 15.8956
76.693; 84.984; 73.199
1287.11Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517671 CIFC52 H37 N2 O16 Zn2P -17.95; 15.86; 21.62
71.45; 80.84; 79.61
2527Shao, Zhichao; Zhao, Yujie; Xie, Qiong; Wang, Hongfei; Cui, Yang; Yang, Xiaoqian; Hou, Hongwei
Efficient Identification for Alcohol Homologues and Hyperthermy Based on Coordination Polymer Multiple Structural Transformations.
ACS applied materials & interfaces, 2020, 12, 24141-24148
4517681 CIFC248 H112 Cr24 N24 O104P 4/m n c28.3898; 28.3898; 40.953
90; 90; 90
33007Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517682 CIFC372 H246 Cu24 N24 O142C 1 2/c 135.33; 36.5192; 45.1327
90; 90.828; 90
58225Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517683 CIFC360 H210 Mo24 N24 O108R -3 :H40.7308; 40.7308; 38.796
90; 90; 120
55740Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517684 CIFC382 H216 Cu24 N24 O144P -126.9144; 28.3903; 33.0223
112.573; 110.846; 91.041
21421.3Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517685 CIFC396 H420 Cu24 N54 O162R -3 :H36.2688; 36.2688; 53.74
90; 90; 120
61220.2Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517686 CIFC360 H216 Cu24 N24 O120P 4/m n c28.327; 28.327; 40.322
90; 90; 90
32355Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517687 CIFC336 H324 Cu24 N36 O138R -3 :H35.7322; 35.7322; 53.462
90; 90; 120
59115Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517688 CIFC338 H192 Cu24 N24 O158P 1 21/n 128.755; 36.718; 37.195
90; 102.779; 90
38299Taggart, Garrett A.; Antonio, Alexandra M.; Lorzing, Gregory R.; Yap, Glenn P. A.; Bloch, Eric D.
Tuning the Porosity, Solubility, and Gas-Storage Properties of Cuboctahedral Coordination Cages via Amide or Ester Functionalization.
ACS applied materials & interfaces, 2020, 12, 24913-24919
4517859 CIFC72 H84 K3 O60C 1 2 124.012; 14.093; 16.6128
90; 107.838; 90
5351.5Li, Han; Shi, Linfan; Li, Chao; Fu, Xiong; Huang, Qiang; Zhang, Bin
Metal-Organic Framework Based on α-Cyclodextrin Gives High Ethylene Gas Adsorption Capacity and Storage Stability.
ACS applied materials & interfaces, 2020, 12, 34095-34104
4517860 CIFC36 H57 Na O31P 21 21 2111.5709; 15.9742; 26.5954
90; 90; 90
4915.78Li, Han; Shi, Linfan; Li, Chao; Fu, Xiong; Huang, Qiang; Zhang, Bin
Metal-Organic Framework Based on α-Cyclodextrin Gives High Ethylene Gas Adsorption Capacity and Storage Stability.
ACS applied materials & interfaces, 2020, 12, 34095-34104
4517906 CIFB6 O12 S Zn4I -4 3 m7.63471; 7.63471; 7.63471
90; 90; 90
445.018Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517907 CIFB6 O12 S Zn4I -4 3 m7.63463; 7.63463; 7.63463
90; 90; 90
445.004Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517908 CIFB6 O12 S Zn4I -4 3 m7.63471; 7.63471; 7.63471
90; 90; 90
445.018Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517909 CIFB6 O12 S Zn4I -4 3 m7.63536; 7.63536; 7.63536
90; 90; 90
445.132Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517910 CIFB6 O12 S Zn4I -4 3 m7.63664; 7.63664; 7.63664
90; 90; 90
445.356Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517911 CIFB6 O12 S Zn4I -4 3 m7.6351; 7.6351; 7.6351
90; 90; 90
445.086Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517912 CIFB6 O12 S Zn4I -4 3 m7.63496; 7.63496; 7.63496
90; 90; 90
445.062Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517913 CIFB6 O12 S Zn4I -4 3 m7.63603; 7.63603; 7.63603
90; 90; 90
445.249Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517914 CIFB6 O12 S Zn4I -4 3 m7.63458; 7.63458; 7.63458
90; 90; 90
444.995Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517915 CIFB6 O12 S Zn4I -4 3 m7.63706; 7.63706; 7.63706
90; 90; 90
445.429Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517916 CIFB6 O12 S Zn4I -4 3 m7.63467; 7.63467; 7.63467
90; 90; 90
445.011Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517917 CIFB6 O12 S Zn4I -4 3 m7.63563; 7.63563; 7.63563
90; 90; 90
445.179Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517918 CIFB6 O12 S Zn4I -4 3 m7.63757; 7.63757; 7.63757
90; 90; 90
445.518Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517919 CIFB6 O12 S Zn4I -4 3 m7.63863; 7.63863; 7.63863
90; 90; 90
445.704Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517920 CIFB6 O12 S Zn4I -4 3 m7.63456; 7.63456; 7.63456
90; 90; 90
444.992Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440

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