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Heng, Wei, Jing, Zhao, Yicheng, *, Qing, Yu, Dapeng, Zhou, Wenke, Yan, Yin and Li.A polymer scaffold for self-healing perovskite solar cells.Nat. Commun.,10228,2016
Sargent, H., Edward, Zhao* , Qing, Yu, Dapeng, Hofkens, Johan, Shan, Chih, Quan, Na, Li, Gong, Xiwen, Voznyy, Oleksandr, Kim, Junghwan, Fan, Z., James, Yang, Zhenyu, Yuan, Haifeng, Tan, Hairen, Zhao and Yicheng.Perovskite seeding growth of formamidinium-leadiodide-based perovskites for efficient and stable solar cells.Nat. Commun.,1607
Qing, Yu, Dapeng, *, Liu, Kaihui, Xu, Zhou, Wenke, Zhao and Yicheng.Quantification of light-enhanced ionic transport in lead iodide perovskite thin films and its solar cell applications.Light-Sci. Appl.,E16243
Qing, Yu, Dapeng, Liu, Xin, Yao, Zhou, Wenke, Fu, Rui, Zhao, Yicheng, Li and Qi.Efficient Perovskite Solar Cells Fabricated Through CsCl-Enhanced PbI2 Precursor via Sequential Deposition.Adv. Mater.,1803095
Wanunu, * Meni, Zhao, Qing, Shakhnovich, Eugene, Yu, Dapeng, Makowski, Lee, Chishti, Yasmin, Cressiot, Benjamin, Waduge, Pradeep, Rodrigues, V., João, Hu and Rui.Differential Enzyme Flexibility Probed Using Solid-State Nanopores.ACS Nano,4494
Qing, Gao, Peng, Yu, Dapeng, Fu, Rui, Yao, Li, Qi, Zhao, Yicheng, Chen, Shulin, Zhou and Wenke.Constructing CsPbBr3 Cluster Passivated‐Triple Cation Perovskite for Highly Efficient and Operationally Stable Solar Cells.Adv. Funct. Mater.,,1809180
Qing, Liu, Xin, Yu, Dapeng, Fu, Rui, Yao, Hou, Yi, Zhou, Wenke, Li, Qi, Zhao and Yicheng.Double‐Side‐Passivated Perovskite Solar Cells with Ultra‐low Potential Loss.Solar RRL,1800296
Qing, Yu, Dapeng, Fu, Rui, Li, Qi, Zhou, Wenke, Yicheng, Zhao and Yao.In Situ Cesium Modification at Interface Enhances the Stability of Perovskite Solar Cells.ACS Appl. Mater. Interfaces,33205-33213
Zhao, Qing, Yu, Dapeng, Li, Qi, Zhou, Wenke, Fu and Rui.Stability Challenges for Perovskite Solar Cells.ChemNanoMat,253-265
Zhao, Qing, Diao, Jiajie, Yu, Dapeng, Lu, Wenlong, Tong, Xin, Li and Xiaoqing.Label-free detection of early oligomerization of α-synuclein and its mutants A30P/E46K through solid-state nanopores. Nanoscale,6480-6488
Qing, Yao, Li, Qi, Zhou, Wenke, Zhao, Yicheng, Fu and Rui.Ultrahigh open-circuit voltage for high performance mixed-cation perovskite solar cells using acetate anions.J. Mater. Chem. A,14387
Qing, Liu, Kaihui, Li, Qi, Fu, Rui, Xu, Zhao, Yicheng, Zhou and Wenke.Light-Independent Ionic Transport in Inorganic Perovskite and Ultrastable Cs-Based Perovskite Solar Cells.J. Phys. Chem. Lett.,4122
Zhao, and Qing, Yu, Dapeng, Rui, Xianfeng, Jiankang, Shen, C., Sophie, Liu, Song, Tang, Zhipeng, Diao, J., Shao and Liqin.Gold nanoparticle wires for sensing DNA and DNA/protein interactions.Nanoscale,4089
Yu, Dapeng, Liao, Zhi-Min, Li, * Heng, Zhao, Qing, Shi and Chenglong.Low cost and flexible mesh-based supercapacitors for promising large-area flexible/wearable energy storage.Nano Energy,82
Yu, Dapeng, Xu, Dongsheng, Wang, Wei, Ma, Qianli, Dong, Hui, *, Zhao, Qing, Li and Heng.Highly-flexible, low-cost, all stainless steel mesh-based dye-sensitized solar cells.Nanoscale,13203
Yu, Dapeng, Luo, Kaifu, Wang, * Jiajun, Zhao, Qing, Lu, Bo, Tang and Zhipeng.Surface Modification of Solid‐State Nanopores for Sticky‐Free Translocation of Single‐Stranded DNA.Small,4332
Yu, Dapeng, Zhao* and, Qing, Xu, Dongsheng, Pan, Jinlong, Guobao, Li, Heng, Zhao, Yicheng, Wei and Jing.Hysteresis analysis based on the ferroelectric effect in hybrid perovskite solar cells.J. Phys. Chem. Lett.,3937
Yu, Dapeng, Zhao* and, Qing, Guo, Peixuan, Wang, Shaoying, Yan, Erfu, Fu, Qiang, Hu, Rui, Tang, Zhipeng, Li and Ji.Probing surface hydrophobicity of individual protein at single-molecule resolution using solid-state nanopores.Science China-Materials,455
Zhao, and Qing, *, Yu, Dapeng, Li and Ji.Solid-state nanopore-based DNA single molecule detection and sequencing. Microchim. Acta,941
Zhao, and Qing, *, Yu, Dapeng, Hu, Rui, Li, Ji, Tang, Zhipeng, Liang and Zexi.Interaction prolonged DNA translocation through solid-state nanopores. Nanoscale,10752