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个人简介

教育经历 1987年7月生于江苏省镇江市, 2005.08-2014.07 :清华大学化学系本硕博导师:王训教授 工作经历 2014.12 – 2017.12 : 美国爱荷华州立大学化学与生物工程系博士后研究学者 2018.01 至今:南京理工大学化工学院化学系 教授

研究领域

无机纳米材料,纳米能源材料,热电转换材料

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)

Wei Zhao, Kangpeng Jin, Liangwei Fu, Zhan Shi, Biao Xu*,Mass Production of Pt Single-Atom-Decorated Bismuth Sulfide for n-Type Environment-Friendly Thermoelectrics, 2022, Nano Lett., Accepted Kangpeng Jin, Janak Tiwari, Tianli Feng*, Yue Lou*, Biao Xu*,Realizing high thermoelectric performance in eco-friendly Bi2S3 with nanopores and Cl-doping through shape-controlled nano precursors, 2022, Nano Energy, Accepted. Zhenyu Zhu, Janak Tiwari, Tianli Feng, Zhan Shi, Yue Lou*, Biao Xu*,High thermoelectric properties with low thermal conductivity due to the porous structure induced by the dendritic branching in n-type PbS, Nano Res. 2022, 15, 4739–4746. Junjie Yuan, Kangpeng Jin, Liangwei Fu*, Biao Xu*,Enhanced Thermoelectric performance of SnSe by doping with the heavy rare earth element Yb,J Alloy Compoun. 2022, 907, 164438 Biao Xu,* Tianli Feng, Zhe Li, Lin Zhou, Sokrates T. Pantelides, Yue Wu.*Creating Zipper-like van der Waals Gap Discontinuity in Low-Temperature-Processed Nanostructured PbBi2nTe1+3n for Enhanced Phonon Scattering and Improved Thermoelectric Performance; Angew. Chem. Int. Ed.2018, 57, 10938 –10943;(I. F. = 11.994) Biao Xu,* Tianli Feng, Zhe Li, Wei Zheng, Yue Wu*Large-Scale, Solution-Synthesized Nanostructured Composites for Thermoelectric Applications; Advanced Materials 2018, 30, 1801904;(I. F. = 21.950) Biao Xu,* Tianli Feng, Zhe Li, Sokrates T. Pantelides and Yue Wu.*Constructing Highly Porous Thermoelectric Monoliths with High Performance and Improved Portability from Solution-Synthesized Shape-Controlled Nanocrystals Nano Lett.2018, 18, 4034-4039. (I. F. = 12.712) Biao Xu, Tianli Feng, Matthias T. Agne, Qing Tan, Zhe Li, Kazuki Imasato, Lin Zhou, Je-Hyeong Bahk, Xiulin Ruan, G. Jeffery Snyder, Yue Wu*.Manipulating Band Structure through Reconstruction of Binary Metal Sulfide towards High-Performance Thermoelectrics in Solution-Synthesized Nanostructured Bi13S18I2, Angew. Chem. Int. Ed.2018, 57,2413-2418. VIP(I. F. = 11.994)

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