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成果及论文

2024

[1] Zheng-Yi Huang, Yi-Ying Chen, Le-Yang Hao, Ying-Jie Hua, Bing-Xin Lei,* and Zhao-Qing Liu*, Corner-Sharing Tetrahedrally Coordinated W-V Dual Active Sites on Cu2V2O7 for Photoelectrochemical Water Oxidation. Small, 2024, 20, 2307547

[2] Ming-Wu Liu, Gengling Liu, Yu-Fen Wang*, Bing-Xin Lei* and Wu-Qiang Wu*Applications of multifunctional metal-organic frameworks in perovskite photovoltaics: roles, advantages and prospects. Mater. Chem. Front., 2024, 8, 869  https://doi.org/10.1039/D3QM01001E

[3] Huanyu Chen, Xueqing Chang, Guo Yang, Bing-Xin Lei,* Wu-Qiang Wu*, Cyclodextrin-assisted supramolecular host-guest inclusion for durable and sustainable optoelectronics. Microstructures, 2024;4:2024031

[4] Xue-Li Yang, Min Qiu, Zi-Xuan Zhao, Ling Chen, Jun Du, Xing Fan, Bing-Xin Lei*, Zhao-Qing Liu*, In situ growth of Cs3Bi2Br9/BiOBr S-scheme heterojunction in alcohol aqueous solution for boosting photocatalytic activity. Applied Catalysis A, General 685 (2024) 119899

[5] Lei Zhang, Hui Kang, Xinyi Lin,Qin Xu, Bing-Xin Lei*, Tian Tian*, Huan Pang, Advancing Perspectives on Large-Area Perovskite Luminescent Films. Energy & Fuels (2024) https://doi.org/10.1021/acs.energyfuels.4c03168

[6] Min Qiu, Xue-Li Yang, Zi-Xuan Zhao, Qiu-Ping Luo, Ling Chen, Jun Du, Xing Fan, Bing-Xin Lei*, Water-induced formation of Cs2AgBiBr6/BiOBr heterostructure with enhanced visible-light photocatalytic activity, Advanced Powder Technology, 35 (2024) 104679

2022

[1] Gang Wang, Li-Jiao Ma, Bing-Xin Lei*, Heng Wu*, Zhao-Qing Liu*, Enhanced electron transport through two-dimensional Ti3C2 in dye-sensitized solar cells, Rare Metals 2022, DOI:10.1007/s12598-022-02018-w

[2] Li-Jiao Ma, Hui-Qin Wu, Bi-Yu Chen, Gang Wang, Bing-Xin Lei*, Ding Zhang*, Dai-Bin Kuang*, 0D/2D CsPbBr3 Nanocrystal/BiOCl Nanoplate Heterostructure with Enhanced Photocatalytic Performance, Advanced Materials Interfaces 2022, 2102522

[3] Heng Wu, Ding Zhang, Bing-Xin Lei,* and Zhao-Qing Liu*, Metal Oxide Based Photoelectrodes in Photoelectrocatalysis: Advances and Challenges, ChemPlusChem 2022, 87, e202200097

[4] Yang-Hong Wu, Kai-Yan Yuan, Yan-E He, Heng Wu, Li-Jiao Ma, Gang Wang, Xiao-Dong Qiao, Bing-Xin Lei*, Zhen-Fan Sun, Zhao-Qing Liu*, A topotactic tailored synthesis of waxberry-like mixed-phase TiO2 hollow spheres for dye-sensitized solar cells, Chinese Chemical Letters 2022, 33(2), 963-967

[5] Wenhuai Feng, Ying Tan, Meifang Yang, Yong Jiang, Bing-Xin Lei*, Lianzhou Wang*, Wu-Qiang Wu*, Small amines bring big benefits to perovskite-based solar cells and light emitting diodes, Chem 2022, 8(2), 351-383

[6] Ying Tan, Xueqing Chan, Bing-XinLei*, Wu-QiangWu*, Intermarriage between amorphous and polycrystalline materials in perovskite solar cells: positive or not? Journal of Energy Chemistry 2022, 66, 525-528

[7] Heng Wu, Gang Wang, Bing-Xin Lei*, Bulky 3D Structures of Dithienopyrrol Dye with Copper(II/I) Redox Mediator Enabling Efficient Solar Cells with an Open-Circuit Voltage of 1.13 V, ACS Applied Energy Materials 2022, DOI: 10.1021/acsaem.2c01607

[8] Heng Wu*, Gang Wang, Li-jiao Ma, Jia-Bin Shi, Ding Zhang, Bing-Xin Lei*, Benzophenanthrothiophene based donor-acceptor organic dyes for efficient solar cells with long-term stability, Dyes and Pigments 2022, DOI: 10.1016/j.dyepig.2022.110575

2021

[1] Tian Tian, Jun-Xing Zhong, Meifang Yang, Wenhuai Feng, Chengxi Zhang, Wenjing Zhang, Yaser Abdi, Lianzhou Wang*, Bing-Xin Lei*, Wu-Qiang Wu*, Interfacial linkage and carbon encapsulation enable full solution-printed perovskite photovoltaics with prolonged lifespan, Angewandte Chemie International Edition 2021, 60, 23735–23742

[2] Wenhuai Feng, Jin-Feng Liao, Xueqing Chang, Jun-Xing Zhong, Meifang Yang, Tian Tian, Ying Tan, Liang Zhao, Chengxi Zhang, Bing-Xin Lei*, Lianzhou Wang*, Jinsong Huang*, Wu-Qiang Wu*, Perovskite crystals redissolution strategy for affordable, reproducible, efficient and stable perovskite photovoltaics, Materials Today 2021, 50, 199-223

[3] Li-Jiao Ma, Jia-Bin Shi, Gang Wang, Zi-Zhuo Fu, Yang-Hong Wu, Bing-Xin Lei*, Zhen-Fan Sun*, Economically synthesized NiCo2S4/TiO2 with high reflectance ability as the counter electrode to replace Pt for dye-sensitized solar cells, Advanced Powder Technology 2021, 32, 2654-2661

[4] Yang-Hong Wu, Yan-Na Lu, Li-Jiao Ma, Hong Chen, Yu-Xin Wang, Wu-Qiang Wu*, Bing-Xin Lei*, Zhen-Fan Sun, Green fluorine-free synthesis of hollow rectangular prism-like TiO2 mesocrystals with exposed {001} facets for high-performance dye-sensitized solar cells, Journal of Physical Chemistry C 2021, 125(3): 1684-1692

[5] Yang-Hong Wu, Yu-Feng Cao, Zi-Zhuo Fu, Bing-Xin Lei*, Zhen-Fan Sun*, Cube-like mixed-phases TiO2 mesocrystalline hollow boxes from in situ topotactic transformation for highly efficient dye-sensitized solar cells, Advanced Powder Technology 2021, 32(1): 186-193

[6] Xiao-Dong Qiao, Xin-Yu Ye, Yang-Hong Wu, Li-Jiao Ma, Bing-Xin Lei*, Zhen-Fan Sun*, Tunable synthesis of mesoporous titania with different morphologies for dye-sensitized solar cells, Advanced Powder Technology 2021, 32(1): 99-105

[7] Jin-Feng Liao, Wenhuai Feng, Jun-Xing Zhong, Bing-Xin Lei*, Wu-Qiang Wu*, Can the efficiencies of simplified perovskite solar cells go higher? Journal of Energy Chemistry 2021, 58: 33-36

[8] Wenhuai Feng, Jin-Feng Liao*, Meifang Yang, Jun-Xing Zhong, Bing-Xin Lei*, Liming Ding, Wu-Qiang Wu*, A novel annealing-free amorphous inorganic metal oxyhydroxide cathode interlayer for efficient and stable inverted perovskite solar cells, Solar RRL 2021, 2000664