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1. Barrierless Exciton Self‐Trapping and Emission Mechanism in Low‐Dimensional Copper Halides | Advanced Functional Materials Zengshan Xing, Zhicong Zhou, Guohua Zhong, Christopher C. S. Chan, Yanyan Li, Xinhui Zou, Jonathan E. Halpert*, Haibin Su*, Kam Sing Wong*2. What are Methylammonium and Solvent Fates upon Halide Perovskite Thin‐Film Preparation and Thermal Aging? | Advanced Materials Interfaces Daming Zheng*, Fei Chen, Marie-Noelle Rager, Liam Gollino, Boxue Zhang, Thierry Pauporté* *3. 2D Dion–Jacobson CsPbI3 with Enhanced Interlayer Coupling for Stable and Efficient Photovoltaics | Advanced Materials Interfaces Yutian Lei, Guoqiang Peng, Haoxu Wang, Gang Wang, Siwei Yang, Qian Wang, ZhenHua Li*, Zhiwen Jin**4. Machine‐Learning Modeling for Ultra‐Stable High‐Efficiency Perovskite Solar Cells | Advanced Energy Materials Yingjie Hu, Xiaobing Hu, Lu Zhang, Tao Zheng, Jiaxue You*,Binxia Jia, Yabin Ma, Xinyi Du, Lei Zhang, Jincheng Wang, Bo Che, Tao Chen, Shengzhong (Frank) Liu*5. Formation of a nanoporous PbI2 layer framework via 4‐tBP additive to improve the performance and stability of two‐step prepared hybrid perovskite solar cells under ambient conditions | International Journal of Energy Research Paola M. Moreno-Romero*, Carlos A. Rodríguez-Casta?eda, Asiel. N. Corpus-Mendoza, D. Mateus Torres-Herrera, Jhon J. Prias-Barragán, Hailin Hu* *6. CsPbI3 lead and CsSnI3 lead‐free perovskite materials for solar cell device | International Journal of Energy Research Aliaa Gamal, Mansoor Alruqi*, Mohamed Rabia7. Photon‐dressed biexciton mediated anomalous optical Stark effect in CsPbBr3 nanocrystals | Surface and Interface Analysis Megha Shrivastava, Franziska Krieg, Maksym V. Kovalenko, K. V. Adarsh* 8. Optoelectronic properties and ion diffusion mechanism in 2D perovskites Cs3BX5 (B = Ge, Sn, and Pb; X = Cl, Br, and I): a first–principles investigation | ScienceDirectChunfeng Lan, Shijie Yang, Yongfei Wang*, ShuaiZhao*
9. Atomic structure, electronic structure and optical absorption of inorganic perovskite compounds Cs2SnI6-nXn (X = F, Cl, br; n = 0 ~ 6): A first-principles study | ScienceDirect
Du Xia, Wang Xuan, Xiao Nairui, Tang Yehua, Peng Chengxiao*, Wang Ke-Fan*
https://doi.org/10.1016/j.solener.2022.08.069
10. First-principles study on optoelectronic properties of lead-free inorganic iodide double perovskite Cs2AgSb1-xGaxI6 | ScienceDirect
Wan-Ting Wan, Yao-Lin Hu, Ying Xu, Dai-Feng Zou, Hui-Lin Li, Congbing Tan, Yu-Qing Zhao*
https://doi.org/10.1016/j.ssc.2022.114936
11. Impacts of 0D Cs4PbI6 phase in all-inorganic CsPbI3 perovskites on their physical, optical properties and photovoltaic performances | ScienceDirect
Yu Kawano*, Atsushi Nakagawa*, Jakapan Chantana*, Takahito Nishimura*, Abdurashid Mavlonov*, Takashi Minemoto*
https://doi.org/10.1016/j.tsf.2022.139485
12. Brightly Luminescent Green-emitting Halide Perovskite light emitting diode by employing the whole single crystal | ScienceDirectYandong Ren, Jianbo Hua, Zhongxu Han, Mengsi Sun, Shuchen Lü*
13. Improved thermoelectric, thermodynamic, and optical properties performance of double perovskites A2SnBr6 (A=Cs,K,Rb) from first-principles calculations | ScienceDirect
A. El Rharib*, A. Amine*, A. Oukerroum, M.A. Kinani, Y. Mir, M. Zazoui
https://doi.org/10.1016/j.cocom.2022.e00744
14. Traps in the spotlight: How traps affect the charge carrier dynamics in Cs2AgBiBr6 perovskite | ScienceDirect
Valentina M. Caselli, Jos Thieme, Huygen J. J?bsis, Sohan A. Phadke, Jiashang Zhao, Eline M. Hutter, Tom J. Savenije*
https://doi.org/10.1016/j.xcrp.2022.101055
15. Jahn?Teller Distortion-Stabilized Halide Double Perovskites with Unusual Rock-Salt-type Ordering of Divalent B-Site Cations | Chemistry of Materials 16. Unraveling Correlated Electronic States in Layered Manganese-Based Perovskites | The Journal of Physical Chemistry C Pramitha Yuniar Diah Maulida, Dingguan Wang, Francesco Maddalena, Chi Sin Tang, Xinmao Yin, Caozheng Diao, Irma Mulyani, Djulia Onggo, Alfian Noviyanto, Muhammad Danang Birowosuto, Arramel*, Andrew Thye Shen Wee, and Andrivo Rusydi*
17. Hybrid Organic–Inorganic Crystals of [Methylhydrazinium]MIICl3 (MII = Co, Ni, Mn) | The Journal of Physical Chemistry C
Jan A. Zienkiewicz*, Maciej Ptak, Dawid Drozdowski, Katarzyna Fedoruk, Mariusz Stefanski, and Adam Pikul
https://doi.org/10.1021/acs.jpcc.2c04893
18. Suppression of Phase Transitions in Perovskite Thin Films through Cryogenic Electron Beam Irradiation | Nano Letters Binbin Jin, Fei Liang, Ding Zhao*, Yihan Lu, Lufang Liu, Fengjiang Liu, Zhong Chen, Gang Bi, Pan Wang, Qing Zhang, and Min Qiu*
19. A Tunable Electrochemical Strategy toward an All-Inorganic CsPbBr3 Perovskite | Applied Energy Materials
Xin Wang, Dezhao Zhang, Chao Gao, Feiyang Qiao, Jingjing Liang, Hong Liu*, and Wenzhong Shen*
https://doi.org/10.1021/acsaem.2c01554
*20. BT-MA0.6FA0.4PbI3–xClx Unsymmetrical Perovskite for Solar Cells with Superior Stability and PCE over 23% | Applied Energy MaterialsJin Huang*, Chunyang Chen, Yiming Li, Hao Wang, Fanghui Zhang, and Dan Zhang*
21. Simultaneous Enhancement of Thermoelectric Power Factor and Phase Stability of Tin-Based Perovskites by Organic Cation Doping | Applied Energy Materials
Teng Wang, Xin Xu, Wenhui Li, Yuheng Li, Qian Liu, Chang’an Li, Chengwei Shan, Gongqiang Li, Tingting Shi*, and Aung Ko Ko Kyaw*
https://doi.org/10.1021/acsaem.2c01773
22. Bio-Inspired Graphitic Carbon-Based Large-Area (10 × 10 cm2) Perovskite Solar Cells: Stability Assessments under Indoor, Outdoor, and Water-Soaked Conditions | Applied Materials & InterfacesSelvakumar Pitchaiya*, Nandhakumar Eswaramoorthy, Venkatraman Madurai Ramakrishnan*, Muthukumarasamy Natarajan*, and Dhayalan Velauthapillai*
23. Flexible Threshold Switching Based on CsCu2I3 with Low Threshold Voltage and High Air Stability | Applied Materials & Interfaces
Fengchang Huang, Shuaipeng Ge, Ruilai Wei, Jiaqi He, Xiaole Ma, Juan Tao, Qiuchun Lu, Xiaoming Mo, Chunfeng Wang*, and Caofeng Pan*
https://doi.org/10.1021/acsami.2c09904
24. Balancing Lattice Strain by Embedded Ionic Liquid for the Stabilization of Formamidinium-Based Perovskite Solar Cells | Applied Materials & InterfacesChenhui Duan, Zihui Liang, Jinguo Cao, Bowen Jin, Yidong Ming, Shimin Wang, Binghe Ma, Tao Ye*, and Congcong Wu*
25. Protein-Mediated Aqueous Synthesis of Stable Methylammonium Lead Bromide Perovskite Nanocrystals: Implications for Biological and Environmental Applications | Applied Nano Materials
Masoud Aminzare, Ehsan Hamzehpoor, Sara Mahshid, and Noémie-Manuelle Dorval Courchesne*
https://doi.org/10.1021/acsanm.2c02476
26. Highly Stable Amine-Free CsPbBr3 Perovskite Nanocrystals for Perovskite-Based Display Applications | Applied Nano MaterialsSyed Akhil, Manoj Palabathuni, Subarna Biswas, Rahul Singh, and Nimai Mishra*
27. Liquid-Phase van der Waals Epitaxy of a Few-Layer and Unit-Cell Thick Ruddlesden–Popper Halide Perovskite | Journal of the American Chemical Society
Lifu Zhang, Jie Jiang, Yang Hu, Zonghuan Lu, Xixing Wen, Saloni Pendse, Ru Jia, Gwo-Ching Wang, Toh-Ming Lu, and Jian Shi*
https://doi.org/10.1021/jacs.2c07069
28. New Low-Dimensional Lead-Free Perovskite (2-AMP)2BiX7·H2O (X = Cl, Br) Crystals: Synthesis, Stability, and Nonlinear Optical Properties | Inorganic Chemistry Defu Sun, Duanliang Wang, Hanzhang Chen, Ruoxian Hou, Yangyang Dang*, Kui Wu*, Jiyang Wang, and Chuanying Shen*
29. High Efficiency Near-Infrared Light Emission and Ultra-high Stability Lead-free Double Perovskite Cs2Na1-xAgxBi1-yAlyCl6 | Journal of Materials Chemistry C
Bin He, Qilin Wei, Bao Ke, Zixuan Wu, Hualin Zhao, Jieyu Wei, Chengzhi Yang, Shuya Jin and Bingsuo Zou
https://doi.org/10.1039/D2TC02455A
30. Correction: Enhanced photoluminescence stability and internal defect evolution of the all-inorganic lead-free CsEuCl3 perovskite nanocrystals | Physical Chemistry Chemical Physics Yalei Gao, Tao Zhang, Jun Liu*, Hongjun Liu, Meixian Li, Fuchi Liu, Wenjie Kong, Fengzhen Lv, Yong Yang*, Lizhen Long*
31. Structural and compositional properties of 2D CH3NH3PbI3 hybrid halide perovskite: a DFT study | RSC Advances
Sandip R. Kumavat, Geeta Sachdeva, Yogesh Sonvane*, Sanjeev K. Gupta
https://doi.org/10.1039/D2RA02874C
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