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38.Highest-Efficiency Flexible Perovskite Solar Module byInterface Engineering for Efficient Charge-Transfer |
Dong Yang,* Ruixia Yang, Cong Zhang, Tao Ye, Kai Wang, Yuchen Hou, Luyao Zheng,Shashank Priya, Shengzhong (Frank) Liu* |
37.Recoverable Flexible Perovskite Solar Cells for Next-Generation Portable Power Sources |
Jieqiong Liu, Tao Ye, Dongqu Yu,* Shengzhong (Frank) Liu,* Dong Yang* |
36.Surface Energy Engineering of Buried Interface for HighlyStable Perovskite Solar Cells with Efficiency Over 25% |
Hang Su, Zhuo Xu, Xilai He, Yuying Yao, Xinxin Zheng, Yutong She, Yujie Zhu,Jing Zhang,* Shengzhong (Frank) Liu* |
35.Alkali-Metal–Assisted Green-Solvent Synthesis for In SituGrowth of Perovskite Nanocrystals in Porous Materials |
Peijun Wang, Bolun Wang, Nan Li, Tong He, Hao Zhang, Lu Zhang,* Shengzhong (Frank) Liu* |
34.Surfactant engineering for perovskitesolar cells and submodules |
Le Wang+, Dexu Zheng+, Zhipeng Li, Bita Farhadi, Lei Peng, Shuai Zhao, Zhen Chang,Lianjie Duan, Yuexian Cao, Hui Wang, Yao Tong,* Minyong Du,* Kai Wang,* Shengzhong (Frank) Liu* |
33.Intermediate Phase Modification Enables High-PerformanceIodine-Rich Inorganic Perovskite Solar Cells with 3000-Hour Stability |
Simin Ma, Xiaoyang Xue, Kang Wang,* Qian Wen, Yunhui Han, Jiaqi Wang, Hui Yao,Hui Lu, Lihua Cui, Jinfu Ma, Lu Zhang, Lu Liu, Haoxiang Zhang, Bita Farhadi,Kai Wang,* Shengzhong (Frank) Liu* |
32.Promising Perovskite Solar Cell Candidates: EnhancedOptoelectronic Properties of XSrI 3 Perovskite Materialsunder Hydrostatic Pressure |
Bita Farhadi, Dexu Zheng, Lu Liu, Jishuang Liu, Haoxiang Zhang, Lei Peng,Kai Wang,* Shengzhong Liu* |
31.Defect Passivation and Lithium Ion Coordination Via HoleTransporting Layer Modification for High PerformanceInorganic Perovskite Solar Cells |
Yali Liu, Tianfei Xu, Zhuo Xu, Hao Zhang, Tengteng Yang, Zezhang Wang,Wanchun Xiang,* Shengzhong Liu* |
30.Recent Advances in Wide-Bandgap Organic-Inorganic Halide Perovskite Solar Cells and Tandem Application |
Ting Nie, Zhimin Fang*, Xiaodong Ren,Yuwei Duan, Shengzhong (Frank) Liu* |
29.Electrostatically anchored MXene-Thionine hybrid electrodes for a flexible supercapacitor to attain exceptional performance |
Haoxiang Zhang+, Bita Farhadi+, Kang Wang, Xinxin Xing, Yan Zhu, Xin Guo, Kai Wang*, Shengzhong (Frank) Liu* |
28.The synergistic effect of dry air and surfactantsenables water to be a promising green solventfor stable and efficient perovskite solar cells |
Yanrui Zhang+, Lixia Ren+, Peng Zhai,* Jingjing Xin, Jiarong Wu, Qi Zhang,Xin Chen, Kui Zhao, Lu Zhang and Shengzhong (Frank) Liu* |
27.Room-Temperature Molten Salt-Mediated CsPbI3 Growth forExcellent Photovoltaic Performance |
Shuwan Zai, Ruijie Han, Wangen Zhao,* Chuang Ma, Wenliang Huang, Shengzhong (Frank) Liu* |
26.Realizing low-ion-migration and highly sensitive Xray detection by building g-C3N4 and CH3NH3PbI3bulk heterojunction pellets |
Chengzhi Xue, Yingrui Xiao, Xing Liu, Ziwei Xu, Nan Li, Shubo Wang,Ningyi Yuan, Jianding Ding, Xu Guo,* Zhou Yang *, Shengzhong (Frank) Liu* |
25.Surface modulation for highly efficient and stable perovskite solar cells |
Dongliang Bai+, Dexu Zheng+, Shaoan Yang+, Fengyang Yu,* Xuejie Zhu,Lei Peng, Likun Wang, Jishuang Liu, Dong Yang*,Shengzhong (Frank) Liu* |
24.Surfactant engineering for perovskitesolar cells and submodules |
Le Wang+, Dexu Zheng+, Zhipeng Li, Bita Farhadi, Lei Peng, Shuai Zhao, Zhen Chang,Lianjie Duan, Yuexian Cao, Hui Wang, Yao Tong,* Minyong Du,* Kai Wang,* Shengzhong (Frank) Liu* |
23.5-Chloro-2-Hydroxypyridine Derivatives with Push-PullElectron Structure Enable Durable and Efficient PerovskiteSolar Cells |
Can Zheng, Lidan Liu, Yong Li, Ang Gao, Zhou Yang, Lu Zhang, Zhike Liu,Dapeng Wang,* Shengzhong (Frank) Liu* |
22.Strengthened Surface Modification for High-PerformanceInorganic Perovskite Solar Cells with 21.3% Efficiency |
Yali Liu, Wanchun Xiang,* Tianfei Xu, Hao Zhang, Haojie Xu, Yuchen Zhang,Wenzhuo Qi, Lidan Liu, Tengteng Yang, Zezhang Wang, Shengzhong Liu* |
21.Highly-Stable CsPbI 3 Perovskite Solar Cells with anEfficiency of 21.11% via Fluorinated 4-Amino-BenzoateCesium Bifacial Passivation |
Dongfang Xu, Jungang Wang, Yuwei Duan,* Shaomin Yang, Hong Zou, Lu Yang,Na Zhang, Hui Zhou, Xuruo Lei, Meizi Wu, Shengzhong Liu,* Zhike Liu* |
20.Managing Multiple Halide-Related Defects for Efficient and StableInorganic Perovskite Solar Cells |
Zhiteng Wang, Qingwen Tian,* Hao Zhang, Huidong Xie, Yachao Du, Lei Liu,Xiaolong Feng, Adel Najar, Xiaodong Ren, Shengzhong (Frank) Liu* |
19.Performance-limiting formation kinetics in greenwater-processed perovskite solar cells |
Peng Zhai,* Lixia Ren,* Yanrui Zhang, Zhuo Xu, Yin Wu, Kui Zhao, Lu Zhang, Shengzhong (Frank) Liu* |
18.Charge transport materials for monolithic perovskite-based tandem solarcells: A review |
Zhimin Fang*, Ting Nie, Nan Yan, Jing Zhang, Xiaodong Ren, Xu Guo, Yuwei Duan,Jiangshan Feng, Shengzhong (Frank) Liu* |
17.Modulation on Electrostatic Potential of Passivator forHighly Efficient and Stable Perovskite Solar Cells |
Hang Su, Jing Zhang,* Yingjie Hu, Yuying Yao, Xinxin Zheng, Yutong She, Binxia Jia,Lili Gao,* Shengzhong (Frank) Liu* |
16.Halide-Initiated Structural Regulation in Amidino-BasedLow-Dimensional Perovskite/Perovskitoid and TheirApplication for Crystal X-Ray Detectors |
Chuang Ma, Shumei Wang, Lili Gao,* Zhuo Xu, Xin Song, Tinghuan Yang, Haojin Li,Xinmei Liu, Shengzhong (Frank) Liu, Kui Zhao* |
15.Low-dimensional perovskite modified 3D structures for higher-performance solar cells |
Lili Gao,Ping Hua*,Shengzhong(Frank) Liu* |
14.Lead(II) 2-Ethylhexanoate for Simultaneous ModulatedCrystallization and Surface Shielding to Boost PerovskiteSolar Cell Efficiency and Stability |
Tengteng Yang, Wangen Zhao,* Yan Yang, Wenliang Huang, Kui Zhao, Shengzhong (Frank) Liu* |
13.Amidino-based Dion-Jacobson 2D perovskitefor efficient and stable 2D/3Dheterostructure perovskite solar cells |
Tinghuan Yang, Chuang Ma, Weilun Cai, Shiqiang Wang, Yin Wu, Jiangshan Feng,* Nan Wu,Haojin Li, Wenliang Huang, Zicheng Ding, Lili Gao, Shengzhong (Frank) Liu, Kui Zhao* |
12.25.24%-Efficiency FACsPbI3 Perovskite Solar Cells Enabledby Intermolecular Esterification Reaction of DL-Carnitine Hydrochloride |
Lu Yang, Hui Zhou, Yuwei Duan,* Meizi Wu, Kun He, Yong Li, Dongfang Xu, Hong Zou,Shaoming Yang, Zhimin Fang, Shengzhong Liu, Zhike Liu* |
11.Designing Heterovalent Substitution with AntioxidantAttribute for High-Performance Sn-Pb Alloyed PerovskiteSolar Cells |
Zhen Chang+, Dexu Zheng+, Shuai Zhao, Le Wang, Sajian Wu, Lu Liu,Zhipeng Li, Lu Zhang, Qingshun Dong, Hui Wang, Shiwei Wang,* Kai Wang,* Shengzhong (Frank) Liu* |
10.Ambient-aging process enables enhanced efficiency for wide-bandgap perovskite solar cells |
Yang Yang, Lu Liu, Jianxun Li, Shuai Zhao*, Zhen Chang, Le Wang, Dongqi Yu*, Kai Wang*, Shengzhong (Frank) Liu* |
9.Orientation Engineering via 2D Seeding for Stable 24.83%Efficiency Perovskite Solar Cells |
Wenjing Zhao, Meizi Wu, Zhike Liu,* Shaomin Yang, Yong Li, Jungang Wang, Lu Yang,Yu Han, and Shengzhong (Frank) Liu* |
8.Tailoring the Interfacial Termination via Dipole Interlayerfor High-Efficiency Perovskite Solar Cells |
Tengteng Yang, Wangen Zhao,* Xin Liu, Shengzhong (Frank) Liu* |
7.One-stone-for-two-birds strategy to attain beyond 25% perovskite solar cells |
Tinghuan Yang,Lili Gao,Jing Lu,Chuang Ma,Yachao Du,Peijun Wang,Zicheng Ding,Shiqiang Wang,Peng Xu,Dongle Liu,Haojin Li,Xiaoming Chang,Junjie Fang,Wenming Tian* ,Yingguo Yang,Shengzhong (Frank) Liu*,Kui Zhao* |
6.21.15%-Efficiency and Stable γ -CsPbI 3 Perovskite Solar CellsEnabled by an Acyloin Ligand |
Jungang Wang, Yuhang Che, Yuwei Duan,* Zhike Liu,* Shaomin Yang, Dongfang Xu,Zhimin Fang, Xuruo Lei, Yong Li, Shengzhong (Frank) Liu* |
5.Sintered Polycrystalline BiVO4 Pellet for Stable X-RayDetector with Low Detection Limit |
Shanshan Jia, Yingrui Xiao, Nuo Bu, Nan Li, Deng Li,* Zhou Yang,* Shengzhong (Frank) Liu* |
4.Tailoring the Cs/Br Ratio for Efficient and StableWide-Bandgap Perovskite Solar Cells |
Jiali Cao, Zhimin Fang,* Shengzhong (Frank) Liu* |
3.Bifunctional trifluorophenylacetic acid additive for stableand highly efficient flexible perovskite solar cell |
Yang Cao, Jiangshan Feng*, Zhuo Xu, Lu Zhang, Junjie Lou, Yucheng Liu, Xiaodong Ren, Dong Yang*, Shengzhong (Frank) Liu* |
2.Lignin-derived electrode materials for supercapacitor applications: progress and perspectives |
Yao Tong, Junyu Yang, Jiajun Li, Ziyang Cong, Li Wei, Miaomiao Liu, Shangru Zhai, Kai Wang*, Qingda An* |
1.NiCo2S4 combined 3D hierarchical porous carbon derived from lignin forhigh-performance supercapacitors |
Jiajun Li, Junyu Yang, Peiru Wang, Ziyang Cong, Feiyan Shi, Li Wei*, Kai Wang*,Yao Tong* |
International Journal of Biological Macromolecules 232 (2023) 123344 |