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个人简介

熊胜林,教授,博士生导师,山东省泰山学者专家,全球高被引科学家 教育经历 1997.9 -- 2001.7 安徽工程大学 生物化学工程 学士 2003.9 -- 2007.6 中国科学技术大学 无机化学 博士研究生毕业 理学博士学位 1997.9 -- 2001.6 安徽工程大学 生物工程 本科(学士) 学士 工作经历 2009.3 -- 2011.7 南京航空航天大学 2011.7 -- 至今 山东大学 2007.5 -- 2009.3 中国科技大学 2009.11 -- 2011.6 新加坡国立大学 2011.7 -- 至今 山东大学 化学与化工学院 教授 2009.12 -- 2011.6 新加坡国立大学 博士后 2009.3 -- 2009.9 南京航空航天大学 副教授 2007.5 -- 2009.3 中国科学技术大学 博士后 2001.7 -- 2003.8 安徽工程大学 教务处 留校任教

研究领域

无机合成和制备化学基础研究,特别在以能量存储与转化为导向的无机介观尺度组装结构的合成方法学、精准制备与电化学性能等方面开展基础应用研究。

近期论文

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Yaxin Chen, Baojuan Xi, Man Huang, Liluo Shi, Shaozhuan Huang, Nannan Guo, Da Li, Zhicheng Ju,* and Shenglin Xiong*, “Defect-Selectivity and “Order in Disorder” Engineering in Carbon for Durable and Fast Potassium Storage”, Adv. Mater. 2022, 34(xx), xxxx; DOI:10.1002/adma.2108621. Peng Wang, Fanghan Sun, Shenglin Xiong*, Zhengchunyu Zhang, Bin Duan, Chenghui Zhang, Jinkui Feng, and Baojuan Xi*, “WSe2 Flakelets on N-doped Graphene for Accelerating Polysulfide Redox and Regulating Li Plating”, Angew. Chem. Int. Ed. 2022, 61(x), xxxx–xxx; DOI:10.1002/anie.202116048. Xiao Wang, Zhengchunyu Zhang, Man Huang, Jinkui Feng, Shenglin Xiong*, and Baojuan Xi*, “In-Situ Electrochemically Activated Vanadium Oxide Cathode for Advanced Aqueous Zn-Ion Batteries”, Nano Lett. 2022, 21(x), xxxx−xxxx. Yuanxing Yun, Baojuan Xi*, Fang Tian, Weihua Chen, Wenping Sun, Hongge Pan, Jinkui Feng, Yitai Qian, and Shenglin Xiong*, “Zero-strain Structure for Efficent Ptassium Storage: Nitrogen-enriched Carbon Dual-Confinement CoP Composite”, Adv. Energy Mater. 2022, 12(x), 2103341; DOI: 10.1002/aenm.202103341. Nianxiang Shi, Baojuan Xi, Jie Liu,* Zhengchunyu Zhang, Ning Song, Weihua Chen, Jinkui Feng, and Shenglin Xiong*, “Dual-Functional NbN Ultrafine Nanocrystals Enabling Kinetically Boosted Lithium−Sulfur Batteries”, Adv. Funct. Mater. 2022, 32(x), xxxx; DOI: 10.1002/adfm.xxxx. Yuanxing Yun, Baojuan Xi*, Yu Gu, Fang Tian, Weihua Chen, Jinkui Feng, Yitai Qian,and Shenglin Xiong*, “Cu3P nanoparticles confined in nitrogen/phosphorus dual-doped porous carbon nanosheets for efficient potassium storage”, J. Energy Chem. 2022, 66, 339−347; DOI: 10.1016/j.jechem.2021.05.045. Muhammad Ahmad, Baojuan Xi, Yu Gu, Hua Zhang and Shenglin Xiong*, “NiSe2/FeSe2 heterostructured nanoparticles supported on rGO for efficient catalyst towards water electrolysis”, Inrog. Chem. Front. 2022, 9(x), xxx–xxx. Yu Gu, Baojuan Xi, Wenzhi Tian, Hua Zhang, Qiang Fu, and Shenglin Xiong*, “Boosting Selective Nitrogen Reduction via Geometric Coordination Engineering on Single Tungsten Atoms Catalysts”, Adv. Mater. 2021, 33(25), 2100429; DOI:10.1002/adma.2100429. Peng Wang, Baojuan Xi*, Zhengchunyu Zhang, Man Huang, Jinkui Feng, and Shenglin Xiong*, “Atomic Tungsten on Graphene with Unique Coordination Enabling Kinetically Boosted Lithium−sulfur Batteries”, Angew. Chem. Int. Ed. 2021, 60(28), 15563–15571. DOI:10.1002/anie.202104053. (Dedicated to Professor Yitai Qian on the occasion of his 80th birthday) Xiao Wang, Zhengchunyu Zhang, Baojuan Xi, Weihua Chen, Yuxi Jia, Jinkui Feng, and Shenglin Xiong*, “Advances and Perspectives of Cathode Storage Chemistry in Aqueous Zinc−Ion Batteries”, ACS Nano 2021, 15(6), 9244−9272. Peng Wang, Baojuan Xi*, Man Huang, Weihua Chen, Jinkui Feng, and Shenglin Xiong*, “Emerging Catalysts to Promote Kinetics of Lithium−Sulfur Batteries”, Adv. Energy Mater. 2021, 11(7), 2002893; DOI: 10.1002/aenm.202002893. Zhengchunyu Zhang, Baojuan Xi*, Xiao Wang, Xiaojian Ma, Weihua Chen, Jinkui Feng, and Shenglin Xiong*, “Oxygen Defects Engineering of VO2·xH2O Nanosheets via In−Situ Polypyrrole Polymerization for Efficient Aqueous Zinc Ion Storage”, Adv. Funct. Mater. 2021, 31(34), 2103070; DOI: 10.1002/adfm.2103070. Hua Zhang, Baojuan Xi, Yu Gu, Weihua Chen, and Shenglin Xiong*, “Interface Engineering and Heterometal Doping Mo-NiS/Ni(OH)2 for Overall Water Splitting”, Nano Res. 2021, 14(10), 3466–3473. (Dedicated to Professor Yitai Qian on the occasion of his 80th birthday) Man Huang, Baojuan Xi, Nianxiang Shi, Jinkui Feng, Yitai Qian, Dongfeng Xue, and Shenglin Xiong*, “Quantum-Matter Bi/TiO2 Heterostructure Embedded in N-Doped Porous Carbon Nanosheets for Enhanced Sodium Storage”, Small Struct. 2021, 2(4), 2000085; DOI: 10.1002/sstr.202000085. Muhammad Ahmad, Baojuan Xi, Yu Gu and Shenglin Xiong*, “N-Doped carbon coated NiCo2O4 nanorods for efficient electrocatalytic oxygen evolution”, Inrog. Chem. Front. 2021, 8(15), 3740–3747; DOI: 10.1039/d1qi00500f. Qianliang Zhang, Baojuan Xi, Shenglin Xiong*, and Yitai Qian, “Carbon coated SiO nanoparticles embedded in hierarchical porous N-doped carbon nanosheets for enhanced lithium storage”, Inrog. Chem. Front. 2021, 8(18), 4282–4290; DOI: 10.1039/d1qi00778e. Xiaona Pan, Peixia Yang, Yue Guo, Kejie Zhao, Baojuan Xi, Feng Lin,* and Shenglin Xiong*, “Electrochemical and Nanomechanical Properties of TiO2 Ceramic Filler Li-Ion Composite Gel Polymer Electrolytes for Li Metal Batteries”, Adv. Mater. Inerfaces 2021, 8(16), 2100669; DOI: 10.1002/admi.202100669. Yanting Chu, Baojuan Xi, Shenglin Xiong*, “One-Step Construction of MoO2 Uniform Nanoparticles on Graphene with Enhanced Lithium Storage”, Chin. Chem. Lett. 2021, 32(6), 1983–1987. Qianliang Zhang, Suping Han, Fang Tian, Zhenyu Feng, Baojuan Xi, Shenglin Xiong*, and Yitai Qian, “Molten Salt Derived Graphene-Like Carbon Nanosheets Wrapped SiOx/Carbon Submicrospheres with Enhanced Lithium Storage”, Chin. J. Chem. 2021, 39(5), 1233–1239. Xiao Wang, Baojuan Xi*, Xiaojian Ma, Zhenyu Feng, Yuxi Jia, Jinkui Feng, Yitai Qian, and Shenglin Xiong*, “Boosting Zinc-Ion Storage Capability by Effectively Suppressing Vanadium Dissolution based on Robust Layered Barium Vanadate, Nano Lett. 2020, 20(4), 2899−2906; DOI:10.1021/acs.nanolett.0c00732. Ruchao Wei#, Yu Gu#, Lianli Zou#, Baojuan Xi*, Yixuan Zhao, Yining Ma, Yitai Qian, Shenglin Xiong*, and Qiang Xu*, “Nanoribbon Superstructures of Graphene Nanocages for Efficient Hydrogen Evolution”, Nano Lett. 2020, 20(10), 7342−7349. DOI:10.1021/acs.nanolett.0c02766. # Contributed equally. Yu Gu, Baojuan Xi*, Ruchao Wei, Qiang Fu, Yitai Qian, Shenglin Xiong*, “Sponge Assembled by Graphene Nanocages with Double Active Sites to Accelerates Alkaline HER Kinetics”, Nano Lett. 2020, 20(11), 8375−8383. DOI:10.1021/acs.nanolett.0c03565.

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