只接收在讀博士生,征得導師同意,到本實驗室做論文,進行聯合培養。背景:鋰電池/物理/微電子/化學/電化學/計算/燃料電池研究方向如下:方向1:鋰離子電池正極材料合成/機理方向2:鋰離子電池電解液/石墨界面/電池機理、電化學、熱化學、分析化學、儀器分析方向3:儲氫材料、多孔材料、碳材料、基于多孔材料的新能源應用方向4:高通量計算、第一性原理計算、分子動力學、算法研究方向5:聚合物材料、鋰離子電池隔膜、燃料電池隔膜、鋰離子電池粘結劑方向6:鋰離子電池測試及電池模型、鋰離子電池安全性研究方向7:燃料電池催化劑、膜電極、燃料電池電堆方向8:半導體光刻、光刻膠、電子束光刻、微納制造、雙光子技術等指導教師:何向明、王莉、徐宏、楊洋導師簡介請參考:www.hexmgroup.com/Expert.Asp條件:現導師同意。待遇:每月補貼+業績。專業背景:化學/化工/材料, 有機合成,計算化學,高分子,物理,微電子學,微納制造,固體電子學,固體物理,計算機,信息工程、鋰離子電池、燃料電池等相關背景。工作內容:前沿創新研究。咨詢可發郵件至:hexm@tsinghua.edu.cn,郵件主題請寫明:應聘聯培博士+方向。www.hexmgroup.com近期合作成果:1、Cobalt‐Free Cathode Materials: Families and their Prospects. Advanced Energy Materials, 202103894, doi:10.1002/aenm.202103894 (2022).2、The significance of detecting imperceptible physical/chemical changes/reactions in lithium-ion batteries: a perspective. Energy & Environmental Science,? 15, 2329 – 2355, doi:10.1039/d2ee01020h (2022).3、Li4Ti5O12 spinel anode: Fundamentals and advances in rechargeable batteries. InfoMat,? 4, e12228, doi:10.1002/inf2.12228 (2022).4、In-situ catalytic polymerization of a highly homogeneous PDOL composite electrolyte for long-cycle high-voltage solid-state lithium batteries. Advanced Energy Materials,? revised (2022).5、An insoluble cathode electrolyte interphase design with unsaturated additives enabling durable cycling for high-energy batteries. Advanced Energy Materials, revised (2022).6、Criterion for Identifying Anodes for Practically Accessible High-Energy-Density Lithium-Ion Batteries. ACS Energy Letters,? 6, 3719-3724, doi:10.1021/acsenergylett.1c01713 (2021).7、Polymer Brushes: Synthesis, Characterization, Properties and Applications. Progress in Materials Science,? revised (2022).8、Graphite as anode materials: Fundamental mechanism,recent progress and advances. Energy Storage Materials2021, 36,147-170.9、A review of lithium-ion battery safety concerns:the issues, strategies, and testing standards. J. Energy Chem.2021, 59,83-99.10、PEObased polymer-ceramic hybrid solid electrolytes: a review. Nano Convergence 2021, 8(1), 2.11、The opportunity of metal organic frameworks and covalent organic frameworks in lithium (ion) batteries and fuel cells. Energy Storage Materials,? 33, 360-381, doi:10.1016/j.ensm.2020.08.028 (2020).12、Reviewing the Current Status and Development of Polymer Electrolytes for Solid-State Lithium Batteries. Energy Storage Materials,? 33, 188-215, doi:https://doi.org/10.1016/j.ensm.2020.08.014(2020).