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2022年-研究论文

028、Xinxin Wang, Hao Huang, Shuxian Du, et al. Facile Synthesized Acetamidine Thiocyanate with Synergistic Passivation and Crystallization for Efficient Perovskite Solar Cells[J].   Solar RRL, 2022, 6, 2200717.||PDF

027、Kuangyu Wang, Ziyao Chen, Kai Liu, et al. Molten salt electrolytes for electrochemical capacitors with energy densities exceeding 50 W h kg-1[J].    Energy & Environmental Science , 2022, 15, 5229.||PDF

026、Jing Xu, Yang Jin, Kai Liu, et al. A green and sustainable strategy toward lithium resources recycling from spent batteries[J].   Science Advance , 2022, 8, 7948.||PDF

025、Binglin Guo, Yihao Gao, Yongyue Li, et al. Research on low internal resistance electrodematerials for integrated photovoltaic-storage device[J].    功能材料 , 2022, 53, 10001-10007.||PDF

024、Wendi Zhang, Zhengyuan Fang, Huihui Song, et al. Binary metal oxide anchored into dense N-doped CNTs arrays: Concerted pseudocapacitance and diffusion behavior for long-cyclic Li-ion half/ full batteries [J].    Applied Surface Science , 2022, 577, 151618.||PDF

023、Hang Li, Mingzhen Liu, Meicheng Li, et al. Applications of vacuum vapor deposition for perovskite solar cells: A progress review[J].    iEnergy , 2022, 1, 434-452.||PDF

022、Xiaopeng Yue, Binbin Fan, Xing Zhao, et al. Energy level modulation of TiO2 using amino trimethylene phosphonic acid for efficient perovskite solar cells with an average VOC of 1.19 V [J].    Sustainable Energy and Fuels , 2022, 7, 727-734.||PDF

021、Longze wang, Siyu Jiang, Yuyao Shi, et al. Blockchain-based dynamic energy management mode for distributed energy system with high penetration of renewable energy [J].    International Journal of Electrical Power and Energy Systems , 2023, 148, 108933.||PDF

020、Yingfeng Li, Binxing Wang, Yingjian Liu, et al. Improving carrier separation at the TiO2/CsPbIBr2 interface by gradient Sn-doping[J].     Physical Chemistry Chemical Physics, 2022, 24, 28429.||PDF

019、Xiaopeng Yue, Xing Zhao, Binbin Fan, et al. Surface Regulation through Dipolar Molecule Boosting the Efficiency of Mixed 2D/3D Perovskite Solar Cell to 24%[J].     Advanced Functional Materials, 2022, 2209921.||PDF

018、Zhongliang Gao, Qi Geng, Zhe Wang, et al. Conformal PDMS films for strengthening flexibility and retaining absorption in pyramid ultra-thin c-Si solar cells[J].     Solar Energy, 2022, 247, 520-530.||PDF

017、Xin Sun, Devendra Tiwari, Meicheng Li, et al. Decoupling the impact of bulk and surface point defects on the photoelectrochemical properties of LaFeO3 thin film[J].     Chemical Science, 2022, 13, 11252.||PDF                    

016、Lehao Liu, Dongmei Zhang, Tianrong Yang, et al. Flexible ion-conducting membranes with 3D continuous nanohybrid networks for high-performance solid-state metallic lithium batteries[J].     Journal of Energy Chemistry, 2022, 75, 360-368.||PDF                                                

015、Zhefei Sun, Miao Li, Bensheng Xiao, et al. In situ transmission electron microscopy for understanding materials and interfaces challenges in all-solid-state lithium batteries[J].     eTransportation, 2022, 14, 100203.||PDF                               

014、Wenxuan Lv, Zhaoying Hu, Wei Qiu, et al. Constructing Soft Perovskite-Substrate Interfaces for Dynamic Modulation of Perovskite Film in Inverted Solar Cells with Over 6200 Hours Photostability[J].     Advanced Science, 2022, 2202028.||PDF                     

013、Hao Huang, Peng Cui, Luyao Yan, et al. 24.8%-efficient planar perovskite solar cells via ligand-engineered TiO2 deposition[J].     Joule, 2022, 6, 1-17.||PDF                    

012、Wendi Zhang, Qianxiao Fan, Dongmei Zhang, et al. Dynamic charge modulate lithium uniform plating functional composite anode for dendrite-free lithium metal batteries[J].     Nano Energy, 2022, 1022, 107677.||PDF                               

011、Yingfeng Li, Tao Zhang, Heng Zhang, et al. 太阳能光伏光热高效综合利用技术[J].     发电技术, 2022, 43, 3.||PDF                     

010、Jun Ji, Luyao Yan, Xinxin Wang, et al. Stability Improvement of Perovskite Homojunction by Inhibiting the Diffusion of Doping Defects[J].     Solar RRL, 2022, 6, 2200028.||PDF                    

009、Binglin Guo, Yihao Gao, Yongyue Li, et al. Ni(OH)2 Nanosheets Grown on Reduced Graphene Oxide for Supercapacitor Electrodes[J].     ACS Applied Nano Materials, 2022, 5, 7471-7480.||PDF                    

008、Kuangyu Wang, Kai Liu, Cheng Yang, et al. A high-performance intermediate-temperature aluminum-ion battery based on molten salt electrolyte[J].     Energy Storage Materials, 2022, 48, 356-365 .||PDF                    

007、Yingfeng Li, Bingxin Wang, Mengqi Cui, et al. Methyl passivation is better than silicon oxide passivation in five aspects for the Si/PEDOT:PSS interface[J].     Applied Surface Science, 2022, 597, 153710.||PDF         

006、Chong Zhao, Siyu Jiang, Yu Xie, et al. Analysis of Fault and Protection Strategy of a Converter Station in MMC-HVDC System[J].     Sustainability, 2022, 14, 5446.||PDF                    

005、Shuxian Du, Jing Yang, Shujie Qu, et al. Impact of Precursor Concentration on Perovskite Crystallization for Efficient Wide-Bandgap Solar Cells[J].     Materials, 2022, 15, 3185.||PDF          

004、Shen Liu, Kai Niu, Shuailin Chen, et al.TiO2 bunchy hierarchical structure with effective enhancement in sodium storage behaviors[J].     Carbon Energy, 2022, 1-9.||PDF         

003、Delong Zhang, Siyu Jiang, Jinxin Liu, et al. Stochastic Optimization Operation of the Integrated Energy System Based on a Novel Scenario Generation Method[J].     Processes, 2022, 10, 330.||PDF          

002、Zhongliang Gao, Qi Geng, Zhe Wang, et al. Helical SiNW design with a dual-peak response for broadband scattering in translucent solar cells[J].     Materials Advances, 2022, 3, 953.||PDF          

001、Delong Zhang, Yiyi Ma, Jinxin Liu, et al. Stochastic Optimization Method for Energy Storage System Configuration Considering Self-Regulation of the State of Charge[J].     Sustainability, 2022, 14, 553.||PDF           

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