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个人简介

2002年6月毕业于兰州大学物理系获理学学士学位;2007年6月,兰州大学物理科学与技术学院凝聚态物理专业博士研究生毕业,获理学博士学位;之后留校工作,先后被兰州大学聘任为讲师、副教授和教授职称。2010年在美国伊利诺伊大学香槟分校材料科学与工程系John A Rogers教授(现美国西北大学,四院院士)研究小组作博士后。2020年在美国休斯顿大学工程学院Cunjiang Yu教授研究小组作访问学者。

研究领域

1.柔性电子材料与器件:以纳米线、纳米管、二维材料为基础的能源转换与存储、传感器研究 2.生物可降解电子材料与器件:以生物可降解材料为基础的能源存储器件研究 3.透明氧化物半导体薄膜:以n型和p型透明导电氧化物薄膜为基础的材料与器件研究

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Hongwei Sheng, Jingjing Zhou, Bo Li, Yuhang He, Xuetao Zhang, Jie Liang, Jinyuan Zhou, Qing Su, Erqing Xie, Wei Lan*, Kairong Wang*, Cunjiang Yu*, A thin, deformable, high performance supercapacitor implant that can be biodegraded and bioabsorbed within an animal body, Science Advances7 (2021) eabe3097 Faguang Zhou, Zhizai Li, Wei Lan, Qian Wang, Liming Ding, Zhiwen Jin, Halide Perovskite, a Potential Scintillator for X-Ray Detection, Small Methods, 4 (2020) 2000506 Yonglu Ma, Hongwei Sheng, Wei Dou, Qing Su, Jinyuan Zhou, Erqing Xie, Wei Lan*, Fe2O3 Nanoparticles Anchored on Ti3C2Tx MXene Paper for Flexible Supercapacitors with Ultrahigh Volumetric Capacitance, ACS Appl. Mater. Interfaces 12 (2020) 41410-41418 Chao Yue Zhang, Zhong Wei Lu, Yu Hai Wang, Zhe Dai, Hao Zhao, Geng Zhi Sun, Wei Lan, Xiao Jun Pan, Jin Yuan Zhou, Er Qing Xie, Cooperative chemisorption of polysulfides via 2D hexagonal WS2-rimmed Co9S8 heterostructures for lithium-sulfur batteries, Chemical Engineering Journal 392 (2020) 123734 Yu Hai Wang, Zhe Dai, Chao Yue Zhang, Guo Wen Sun, Zhong Wei Lu, Xiu Ping Gao, Geng Zhi Sun, Wei Lan, Zhen Xing Zhang, Xiao Jun Pan, Investigation into performance enhancements of Li-S batteries via oxygen-containing functional groups on activated multi-walled carbon nanotubes using Fourier transform infrared spectroscopy, Current Applied Physics 20 (2020) 1049-1057 Lingxiao Ma, Dayu Yin, Chenhao Dong, Wei Lan*, Erqing Xie, Effect of swift heavy 86Kr30+ ions irradiation on optical and electrical properties of p‑type transparent Ni‑doped CuAlO2 films, Journal of Materials Science: Materials in Electronics, 31 (2020) 2130-2138 Chuanfang (John) Zhang, Yonglu Ma, Xuetao Zhang, Sina Abdolhosseinzadeh, Hongwei Sheng, Wei Lan*, Amir Pakdel, Jakob Heier, and Frank Nuesch, Two-Dimensional Transition Metal Carbides and Nitrides (MXenes): Synthesis, Properties, and Electrochemical Energy Storage Applications, Energy Environ. Mater., 0 (2019) 1 –27; Zhenyu Yang, Yuhai Wang, Zhe Dai, Zhongwei Lu, Xiuyun Gu, Hao Zhao, Gengzhi Sun, Wei Lan, Zhenxing Zhang, Xiaojun Pan, Jinyuan Zhou, Erqing Xie, Nature of improved double-layer capacitance by KOH activation on carbon nanotube-carbon nanofiber hierarchical hybrids, Carbon 146 (2019) 610-617; Zhong Wei Lu, Yu Hai Wang, Zhe Dai, Xiao Peng Li, Chao Yue Zhang, Geng Zhi Sun, Cheng Shi Gong, Xiao Jun Pan, Wei Lan, Jin Yuan Zhou, Er Qing Xie, One-pot sulfur-containing ion assisted microwave synthesis of reduced graphene oxide@nano-sulfur fibrous hybrids for high-performance lithium-sulfur batteries, Electrochimica Acta 325 (2019) 134920; Wei Lan*, Xuetao Zhang, Aoce Zhai, Wanqing Meng, Hongwei Sheng, Wei Dou, Chuanfang (John) Zhang, Qing Su, Jinyuan Zhou, Erqing Xie Flexible CuO nanotube arrays composite electrodes for wire-shaped supercapacitors with robust electrochemical stability, Chemical Engineering Journal 374 (2019) 181–188; Asim Abas, Hongwei Sheng, Yonglu Ma, Xuetao Zhang, Yupeng Wei, Qing Su, Wei Lan*, Erqing Xie, PEDOT:PSS coated CuO nanowire arrays grown on Cu foam for high‑performance supercapacitor electrodes Journal of Materials Science: Materials in Electronics 30 (2019) 10953–10960; Zhenyu Yang, Yuhai Wang, Zhe Dai, Zhongwei Lu, Xiuyun Gu, Hao Zhao, Gengzhi Sun, Wei Lan, Zhenxing Zhang, Xiaojun Pan, Jinyuan Zhou, Erqing Xie, Nature of improved double-layer capacitance by KOH activation on carbon nanotube-carbon nanofiber hierarchical hybrids, Carbon 146 (2019) 610-617; Hongwei Sheng, Xuetao Zhang, Yonglu Ma, Pengxiang Wang, Jinyuan Zhou, Qing Su, Wei Lan*, Erqing Xie, and Chuanfang John Zhang*, Ultrathin, Wrinkled, Vertically Aligned Co(OH)2 Nanosheets/Ag Nanowires Hybrid Network for Flexible Transparent Supercapacitor with High Performance, ACS Appl. Mater. Interfaces 11 (2019) 8992–9001; Xuetao Zhang, Chuanfang (John) Zhang, Asim Abas, Yue Zhang, Xuemei Mu, Jinyuan Zhou, Qing Su, Wei Lan*, Erqing Xie, Ag nanoparticles enhanced vertically-aligned CuO nanowire arrays grown on Cu foam for stable hybrid supercapacitors with high energy density, Electrochimica Acta 296 (2019) 535-544; Dongyan Han, Yunxia Li, Xiao Jiang, Wenyu Zhao, Fangcong Wang, Wei Lan, Erqing Xie, Weihua Han, A facile method to prepare transparent and stretchable epidermal thin film heaters, Composites Science and Technology 168 (2018) 460-466; Wei Lan∗, Zhiwei Yang, Yue Zhang, Yupeng Wei, Pengxiang Wang, Asim Abas, Guomei Tang, Xuetao Zhang, Junya Wang, Erqing Xie, Novel transparent high-performance AgNWs/ZnO electrodes prepared on unconventional substrates with 3D structured surfaces, Applied Surface Science 433 (2018) 821–828. Xuetao Zhang, Jinyuan Zhou, Wei Dou, Junya Wang, Xuemei Mu, Yue Zhang, Asim Abas, Qing Su, Wei Lan*, Erqing Xie, Chuanfang (John) Zhang*, Room-temperature vertically-aligned copper oxide nanoblades synthesized by electrochemical restructuring of copper hydroxide nanorods: An electrode for high energy density hybrid device, Journal of Power Sources 383 (2018) 124-132; Yijun Han, Peng Dong, Peiping La, Yupeng Wei, Xin Guo, Jie Sheng, Wei Lan, Effect and Mechanism of NaCl Content on Phase and Size of Submicron Tungsten Boride Powders by Salt-assisted Combustion Synthesis, Rare Metal Materials and Engineering 47 (2018) 131-138 Daowei He, Jingsi Qiao, Linglong Zhang, Junya Wang, Tu Lan, Jun Qian, Yun Li, Yi Shi*, Yang Chai, Wei Lan, Luis K. Ono, Yabing Qi, Jian-Bin Xu, Wei Ji*, Xinran Wang*, Ultrahigh mobility and efficient charge injection in monolayer organic thin-film transistors on boron nitride, Science Advances 3 (2017) e1701186; Hao Zhao, Xiangwen Ma, Jinglong Bai, Zhenyu Yang, Gengzhi Sun, Zhenxing Zhang, Xiaojun Pan, Wei Lan, Jin Yuan Zhou, Erqing Xie, Energy storage mechanism in aqueous fiber-shaped Li-ion capacitors based on aligned hydrogenated-Li4Ti5O12 nanowires, Nanascale 9 (2017) 8192-8199;

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