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个人简介

教育经历 2016-07至2020-06, 新加坡南洋理工大学,博士 2013-09至2016-06, 清华大学,硕士 2008-09至2012-07, 中国科学技术大学,本科 工作经历 2022-01至今, 北京理工大学,预聘助理教授(特别副研究员) 2020-08至2021-12, 新加坡南洋理工大学,博士后

研究领域

通过密度泛函理论计算、分子动力学模拟、有限元分析等方法,进行反应机理、含能材料、新能源等领域的理论计算研究,具体包含以下方面: 1. 催化反应机理的理论研究 2. 含能材料的性质与反应机理研究 3. 材料表面/界面性质的理论研究 4. 催化剂与电极材料的理论设计

近期论文

查看导师最新文章 (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)

Li Q, Zhang J*, Zhong L*, Geng F, Tao Y, Geng C, Li S, Hu B, Yang Q-H*. Unraveling the key atomic interactions in determining the varying Li/Na/K storage mechanism of hard carbon anodes. Advanced Energy Materials (2022). Lv C#, Zhong L#, Liu H#, Fang Z, Yan C, Chen M, Kong Y, Lee C, Liu D, Li S, Liu J, Song L, Chen G, Yan Q, Yu G. Selective electrocatalytic synthesis of urea with nitrate and carbon dioxide. Nature Sustainability (2021). Zhong L, Zhang L, Li S. Understanding the activity of carbon-based single-atom electrocatalysts from ab initio simulations. ACS Materials Letters (2021). Gu H#, Zhong L#, Shi G, Li J, Yu K, Li J, Zhang S, Zhu C, Chen S, Yang C, Kong Y, Chen C, Li S, Zhang J, Zhang L. Graphdiyne/graphene heterostructure: a universal 2D scaffold anchoring monodispersed transition-metal phthalocyanines for selective and durable CO2 electroreduction. Journal of the American Chemical Society (2021). Lv C#, Zhou X#, Zhong L#, Yan C, Srinivasan M, Seh Z W, Liu C, Pan H, Li S, Wen Y, Yan Q. Machine learning: an advanced platform for materials development and state prediction in lithium ion batteries. Advanced Materials (2021). Shang L#, Lv X#, Zhong L#, Li S, Zheng G. Efficient CO2 electroreduction to ethanol by Cu3Sn catalyst. Small Methods (2021). Zhong L, Li S. Unconventional oxygen reduction reaction mechanism and scaling relation on single-atom catalysts. ACS Catalysis (2020). Zhu C#, Zhang Z#, Zhong L#, Hsu C-S#, Xu X, Li Y, Zhao S, Chen S, Yu J, Chen S, Wu M, Gao P, Li S, Chen H M, Liu K, Zhang L. Product-specific active site motifs of Cu for electrochemical CO2 reduction. Chem (2020). Zhong L, Li S. Crystal phase effect upon O2 activation on gold surfaces through intrinsic strain. Nanoscale (2019). Liang Q#, Zhong L#, Du C, Luo Y, Zhao J, Zheng Y, Xu J, Ma J, Liu C, Li S, Yan Q. Interfacing epitaxial dinickel phosphide to 2D nickel thiophosphate nanosheets for boosting electrocatalytic water splitting. ACS Nano (2019). Dai C#, Zhong L#, Gong X, Zeng L, Xue C, Li S, Liu B. Triphenylamine based conjugated microporous polymers for selective photoreduction of CO2 to CO under visible light. Green Chemistry (2019). Liang Q#, Zhong L#, Du C, Luo Y, Zheng Y, Li S, Yan Q. Achieving highly efficient electrocatalytic oxygen evolution with ultrathin 2D Fe-doped nickel thiophosphate nanosheets. Nano Energy (2018). Zhong L, Li J, Li Y, Lu H, Du H, Gan L, Xu C, Chiang S W, Kang F. Unraveling the influence of metal substrates on graphene nucleation from first-principles study. Journal of Physical Chemistry C (2016). Wei J, Zhong L, Xia H, Lv Z, Diao C, Zhang W, Li X, Du Y, Xi S, Salanne M, Chen X, Li S. Metal ion oligomerization inside electrified carbon micropores and its effect on capacitive charge storage. Advanced Materials (2021). Lv C, Zhong L, Yao Y, Liu D, Kong Y, Jin X, Fang Z, Xu W, Yan C, Dinh K N, Shao M, Song L, Chen G, Li S, Yan Q, Yu G. Boosting electrocatalytic ammonia production through mimicking “π back-donation”. Chem (2020). Li J, Zhong L, Tong L, Yu Y, Liu Q, Zhang S, Yin C, Qiao L, Li S, Si R, Zhang J. Atomic Pd on graphdiyne/graphene heterostructure as efficient catalyst for aromatic nitroreduction. Advanced Functional Materials (2019). Liang Q, Zhong L, Du C, Zheng Y, Luo Y, Xu J, Li S, Yan Q. Mosaic-structured cobalt nickel tthiophosphate nanosheets incorporated N-doped carbon for efficient and stable electrocatalytic water splitting. Advanced Functional Materials (2018). Dai C, Zhong L, Wu W, Zeng C, Deng Y, Li S. 1,3,5-Triphenylbenzene based porous conjugated polymers for highly efficient photoreduction of low-concentration CO2 in the gas-phase system. Solar RRL (2021). Niu B, Zhong L, Hao W, Yang Z, Duan X, Cai D, He P, Jia D, Li S, Zhou Y. First-principles study of the anisotropic thermal expansion and thermal transport properties in h-BN. SCIENCE CHINA Materials (2020). Zhang H, Zhong L, Bin Samsudin I, Okumura K, Tan H-R, Li S, Jaenicke S, Chuah G-K. Mg-stabilized subnanometer Rh particles in zeolite Beta as highly efficient catalysts for selective hydrogenation. Journal of Catalysis (2021)

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