Crystallography Open Database

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Searching journal of publication like 'Energy & Environmental Science' volume of publication is 15

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1564845 CIFC90 H102 Cl2 F2 N8 O2 S5C 1 2/c 126.5046; 23.0448; 31.2654
90; 107.646; 90
18198.1Wang, Lai; An, Qiaoshi; Yan, Lu; Bai, Hai-Rui; Jiang, Mengyun; Mahmood, Asif; Yang, Can; Zhi, Hongfu; Wang, Jin-Liang
Non-fullerene acceptors with hetero-dihalogenated terminals induce significant difference in single crystallography and enable binary organic solar cells with 17.5% efficiency
Energy & Environmental Science, 2022, 15, 320-333
1564846 CIFC90 H102 Br2 F2 N8 O2 S5C 1 2/c 126.7059; 23.0515; 31.3331
90; 107.898; 90
18355.5Wang, Lai; An, Qiaoshi; Yan, Lu; Bai, Hai-Rui; Jiang, Mengyun; Mahmood, Asif; Yang, Can; Zhi, Hongfu; Wang, Jin-Liang
Non-fullerene acceptors with hetero-dihalogenated terminals induce significant difference in single crystallography and enable binary organic solar cells with 17.5% efficiency
Energy & Environmental Science, 2022, 15, 320-333
1564847 CIFC90 H102 Br2 Cl2 N8 O2 S5P -116.0896; 17.7032; 17.9514
107.551; 114.327; 90.288
4392.9Wang, Lai; An, Qiaoshi; Yan, Lu; Bai, Hai-Rui; Jiang, Mengyun; Mahmood, Asif; Yang, Can; Zhi, Hongfu; Wang, Jin-Liang
Non-fullerene acceptors with hetero-dihalogenated terminals induce significant difference in single crystallography and enable binary organic solar cells with 17.5% efficiency
Energy & Environmental Science, 2022, 15, 320-333
1565981 CIFC100 H108 F6 N8 O2 S5P -116.0665; 17.2536; 17.4364
111.025; 94.188; 96.672
4446.7Li, Guoping; Feng, Liang-Wen; Mukherjee, Subhrangsu; Jones, Leighton O.; Jacobberger, Robert M.; Huang, Wei; Young, Ryan M.; Pankow, Robert M.; Zhu, Weigang; Lu, Norman; Kohlstedt, Kevin L.; Sangwan, Vinod K.; Wasielewski, Michael R.; Hersam, Mark C.; Schatz, George C.; DeLongchamp, Dean M.; Facchetti, Antonio; Marks, Tobin J.
Non-fullerene acceptors with direct and indirect hexa-fluorination afford >17% efficiency in polymer solar cells
Energy & Environmental Science, 2022, 15, 645-659
1565982 CIFC98 H102 F6 N8 O2 S5P 1 2/c 124.0563; 25.5964; 43.2943
90; 93.25; 90
26615.8Li, Guoping; Feng, Liang-Wen; Mukherjee, Subhrangsu; Jones, Leighton O.; Jacobberger, Robert M.; Huang, Wei; Young, Ryan M.; Pankow, Robert M.; Zhu, Weigang; Lu, Norman; Kohlstedt, Kevin L.; Sangwan, Vinod K.; Wasielewski, Michael R.; Hersam, Mark C.; Schatz, George C.; DeLongchamp, Dean M.; Facchetti, Antonio; Marks, Tobin J.
Non-fullerene acceptors with direct and indirect hexa-fluorination afford >17% efficiency in polymer solar cells
Energy & Environmental Science, 2022, 15, 645-659
1566632 CIFC78 H78 N6 O3P -114.2538; 17.1903; 17.3592
79.038; 72.546; 68.828
3767.7Fang, Lingyi; Zhang, Yuyan; Ren, Ming; Xie, Xinrui; Li, Tianyu; Yuan, Yi; Zhang, Jing; Wang, Peng
A triple helicene based molecular semiconductor characteristic of a fully fused conjugated backbone for perovskite solar cells
Energy & Environmental Science, 2022, 15, 1630-1637
1566850 CIFC3 H18 Al F9 O18 S3P 21 21 216.4503; 15.415; 22.904
90; 90; 90
2277.38Pastel, Glenn R.; Chen, Ying; Pollard, Travis P.; Schroeder, Marshall A.; Bowden, Mark E.; Zheng, Allen; Hahn, Nathan T.; Ma, Lin; Murugesan, Vijayakumar; Ho, Janet; Garaga, Mounesha; Borodin, Oleg; Mueller, Karl; Greenbaum, Steven; Xu, Kang
A sobering examination of the feasibility of aqueous aluminum batteries
Energy & Environmental Science, 2022, 15, 2460-2469
1567342 CIFC104 H120 Cl6 N8 O2 S4P -115.4157; 17.5066; 19.617
95.374; 102.99; 104.699
4925.7Zou, Yalu; Chen, Hongbin; Bi, Xingqi; Xu, Xiaoyun; Wang, Hebin; Lin, Menglu; Ma, Zaifei; Zhang, Mingtao; Li, Chenxi; Wan, Xiangjian; Long, Guankui; Zhaoyang, Yao; Chen, Yongsheng
Peripheral halogenation engineering controls molecular stacking to enable highly efficient organic solar cells
Energy & Environmental Science, 2022, 15, 3519-3533
1567343 CIFC104 H120 F6 N8 O2 S4P 1 21/c 117.222; 59.388; 19.162
90; 98.29; 90
19394Zou, Yalu; Chen, Hongbin; Bi, Xingqi; Xu, Xiaoyun; Wang, Hebin; Lin, Menglu; Ma, Zaifei; Zhang, Mingtao; Li, Chenxi; Wan, Xiangjian; Long, Guankui; Zhaoyang, Yao; Chen, Yongsheng
Peripheral halogenation engineering controls molecular stacking to enable highly efficient organic solar cells
Energy & Environmental Science, 2022, 15, 3519-3533
1567344 CIFC104 H120 Cl4 F2 N8 O2 S4R 3 c :H41.303; 41.303; 32.517
90; 90; 120
48040Zou, Yalu; Chen, Hongbin; Bi, Xingqi; Xu, Xiaoyun; Wang, Hebin; Lin, Menglu; Ma, Zaifei; Zhang, Mingtao; Li, Chenxi; Wan, Xiangjian; Long, Guankui; Zhaoyang, Yao; Chen, Yongsheng
Peripheral halogenation engineering controls molecular stacking to enable highly efficient organic solar cells
Energy & Environmental Science, 2022, 15, 3519-3533
1567503 CIFC26 H22 Cl2 N8 O8 RuP b c n8.1943; 21.1329; 16.5436
90; 90; 90
2864.8Pokhrel, Indira; Reddy, Guda Dinneswara; Kwon, Taejin; Choi, Eungyeong; Chun, Yu Sung; Lee, Sang Tak; Sung, Bong June; Lee, Duck Hyung; Bin Oh, Han; Yoon, Kyung Byung
Insights into the directions to increase turnover frequency and turnover number during photochemical water oxidation with molecular Ru catalysts
Energy & Environmental Science, 2022, 15, 4259-4288
1567504 CIFC24 H24 Cl2 N10 O8 RuC 1 2/c 117.8962; 10.2796; 15.9597
90; 90.899; 90
2935.68Pokhrel, Indira; Reddy, Guda Dinneswara; Kwon, Taejin; Choi, Eungyeong; Chun, Yu Sung; Lee, Sang Tak; Sung, Bong June; Lee, Duck Hyung; Bin Oh, Han; Yoon, Kyung Byung
Insights into the directions to increase turnover frequency and turnover number during photochemical water oxidation with molecular Ru catalysts
Energy & Environmental Science, 2022, 15, 4259-4288
1567505 CIFC30 H29 F12 N9 P2 RuP -18.2606; 10.798; 20.5518
77.5866; 84.0528; 84.8406
1776.36Pokhrel, Indira; Reddy, Guda Dinneswara; Kwon, Taejin; Choi, Eungyeong; Chun, Yu Sung; Lee, Sang Tak; Sung, Bong June; Lee, Duck Hyung; Bin Oh, Han; Yoon, Kyung Byung
Insights into the directions to increase turnover frequency and turnover number during photochemical water oxidation with molecular Ru catalysts
Energy & Environmental Science, 2022, 15, 4259-4288
1567669 CIFC74 H44 F4 N8 O3 S5C 1 2/c 123.7933; 57.27; 13.4957
90; 109.688; 90
17314.8Luo, Zhenghui; Gao, Yuan; Lai, Hanjian; Li, Yuxiang; Wu, Ziang; Chen, Zhanxiang; Sun, Rui; Ren, Jiaqi; Zhang, Cai’e; He, Feng; Woo, HanYoung; Min, Jie; Yang, Chuluo
Asymmetric side-chain substitution enables a 3D network acceptor with hydrogen bond assisted crystal packing and enhanced electronic coupling for efficient organic solar cells
Energy & Environmental Science, 2022, 15, 4601-4611
1567670 CIFC58 H44 F0.5 N16 O4.5 S5P -113.457; 23.14; 30.127
70.475; 86.756; 80.476
8720Luo, Zhenghui; Gao, Yuan; Lai, Hanjian; Li, Yuxiang; Wu, Ziang; Chen, Zhanxiang; Sun, Rui; Ren, Jiaqi; Zhang, Cai’e; He, Feng; Woo, HanYoung; Min, Jie; Yang, Chuluo
Asymmetric side-chain substitution enables a 3D network acceptor with hydrogen bond assisted crystal packing and enhanced electronic coupling for efficient organic solar cells
Energy & Environmental Science, 2022, 15, 4601-4611

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