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中山大学材料科学与工程学院导师教师师资介绍简介-朱昌宝

本站小编 Free考研考试/2021-05-20



个人基本简介:
职称:教授
学位:博士
毕业学校:德国马普固体所
电子邮件:zhuchb6@mail.sysu.edu.cn

主要经历:
2017年6月至今 中山大学材料科学与工程学院,教授,博导
2013年6月-2017年5月 德国马普固体所,博士后研究员
2009年9月-2013年5月 德国马普固体所,博士
2007年9月-2009年9月 法国图卢兹三大(欧盟Erasmus Mundus项目),理学硕士
2005年9月-2007年9月 厦门大学,理学硕士
2001年9月-2005年6月 重庆大学,工学学士
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学科方向:
主要研究方向:先进能源材料与纳米离子学。着眼于先进电池材料的理性设计、可控制备与应用基础研究。特别关注储能体系中的缺陷化学,纳米离子学,以及离子输运与存储过程中的尺寸效应和界面效应。
具体研究方向:
1. 碱金属(锂/钠/钾)基离子电池和碱金属(锂/钠)硫电池
2. 金属锂及固态电池技术
3. 水系电池体系(如锌离子电池)
4. 光/电催化
5. 纳米离子学 (缺陷化学、尺寸效应、电子/离子在固体中的输运、界面研究)
欢迎能源材料及电化学相关方向,或者具有材料计算模拟、原位电化学、同步辐射或其他先进表征技术背景的硕士研究生、博士研究生、博士后、及专职科研人员(研究员、副研究员)加盟课题组。同时欢迎本科生到课题组做大学生创新计划项目、科研训练和毕业设计。

荣誉获奖:
2017 国家“四青”----青年海外高层次人才
2019 “珠江人才计划” 青年拔尖人才
2017 中山大学“****”引进人才
2020 光电材料与技术国家重点实验室固定人员
2011 国家优秀自费留学生奖学金
2007 欧盟Erasmus Mundus奖学金

主要兼职:
物理化学学报青年编委
Advanced Functional Materials;Nano energy;Solid State Ionics;Journal of The Electrochemical Society;Journal of Materials Chemistry A;Nanoscale;Electrochimica Acta; ACS Applied Materials & Interfaces; RSC Advances; Materials Science & Engineering B; ChemElectroChem;Microporous & Mesoporous Materials;Journal of Alloys and Compounds; Ionics; Journal of Solid State Science and Technology; Energy Technology;Nanomaterials; Chinese Physics B 等SCI期刊的独立审稿人。

代表论著:
在《Science》,《Adv. Mater.》,《Angew. Chem. Int. Ed.》,《Nano Lett.》等材料化学领域著名国际期刊上发表论文37篇,其中ESI高被引论文(top 1%)6篇,ESI热点论文(top 0.1%)1篇。第一作者或通讯作者论文中影响因子大于10的20篇,包括: Science(1篇),Angew. Chem. Int. Ed.(2篇),Adv. Mater.(2篇),Nano Lett.(2篇),Adv. Funct. Mater.(5篇),Adv. Energy Mater.(2篇),ACS Energy Letters(1篇),Adv. Sci.(1篇),Small.(2篇),Chem. Mater.(1篇),J. Mater. Chem. A(1篇)。多篇论文被选为封面文章和卷首插图文章。SCI论文引用次数超过3800余次,单篇最高引用688余次。研究工作被《Nature》《Materials Views China》等作为亮点报道,已授权欧洲专利和中国专利各一项。
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发表论文列表:
C.?Zhu, R.?Usiskin, Y.?Yu, and J.?Maier, The Nanoscale Circuitry of Battery Electrodes, Science, 358, eaao2808 , 2017.
A. Bayaguud, X. Luo, Y. Fu, C. Zhu*, Cationic Surfactant-Type Electrolyte Additive Enables Three-Dimensional Dendrite-Free Zinc Anode for Stable Zinc-Ion Batteries. ACS Energy Lett. 2020, DOI: 10.1021/acsenergylett.0c01792.
Q. Deng, F. Chen, S. Liu, A. Bayaguud, Z. Zhang, Y. Fu, Y. Yu*, and C. Zhu*, Advantageous Functional Integration of Adsorption-Intercalation-Conversion Hybrid Mechanisms in 3D Flexible Nb2O5@Hard Carbon@MoS2@Soft Carbon Fiber Paper Anodes for Ultrafast and Super-Stable Sodium Storage,Adv. Funct. Mater., 2020, online, 10.1002/adfm..
Q. Yao, C. Zhu*, Advanced Post-Potassium-Ion Batteries as Emerging Potassium-Based Alternatives for Energy Storage, Adv. Funct. Mater., 2020, DOI: 10.1002/adfm..
D. Wang, C. Zhu*, Y. Fu, X. Sun*, Y. Yang*, Interfaces in Garnet-Based All-Solid-State Lithium Batteries, Adv. Energy Mater., 2020, DOI: 10.1002/aenm..
C.?Zhu, P.?Kopold, P.?A. van Aken, J.?Maier, and Y.?Yu, High Power–High Energy Sodium Battery Based on Threefold Interpenetrating Network, Adv. Mater., 28(12), 2409 (2016). (frontispiece paper, 卷首插画论文) (被Nature作为亮点报道, Nature 530, 133, doi:10.1038/530133c) (ESI高被引论文)
C. Zhu* ; Y. Fu; Y. Yu*,Designed Nanoarchitectures by Electrostatic Spray Deposition for Energy Storage,Adv. Mater., 31(1), **, 2019.
Z. Zhang; Z. Chen; Z. Mai; K. Peng; Q. Deng; A. Bayaguud; P. Zhao; Y. Fu; Y. Yu*; C. Zhu*,Toward High Power-High Energy Sodium Cathodes: A Case Study of Bicontinuous Ordered Network of 3D Porous Na3(VO)2(PO4)2F/rGO with Pseudocapacitance Effect,Small,15, **, 2019.
A. Bayaguud, Z. Zhang, M. Geng, Y. Fu, Y. Yu*, and C. Zhu*, Transformation of Polyoxometalate into 3D Porous Li-Containing Oxide: A Case Study of gamma-LiV2O5 for High-Performance Cathodes of Li-Ion Batteries,Small Methods, 3, **, 2019.
C.?Zhu, X.?K. Mu, P.?A. van Aken, Y.?Yu, and J.?Maier, Single-layered Ultrasmall Nanoplates of MoS2 Embedded in Carbon Nanofibers with Excellent Electrochemical Performance for Lithium and Sodium Storage, Angew. Chem. Int. Ed., 53, 2152 (2014).(ESI高被引论文,2015 ESI热点论文)
Q. Deng; Y. Fu*; C. Zhu*; Y. Yu*,Niobium-Based Oxides Toward Advanced Electrochemical Energy Storage: Recent Advances and Challenges,Small,15, **, 2019.
Y. Fu, Z. Zhang, C. Zhu*, Bicontinuous transition metal phosphides/rGO binder-free electrodes: generalized synthesis and excellent cycling stability for sodium storage, 2020, 12, 16716.
C.?Zhu, Y.?Yu, L.?Gu, K.?Weichert, and J.?Maier, Electrospinning of Highly Electroactive Carbon-Coated Single-Crystalline LiFePO4 Nanowires, Angew. Chem. Int. Ed., 50, 6278 (2011). (ESI高被引论文)
C.?Zhu, K.-P. Song, P.?A. van Aken, Y.?Yu, and J.?Maier, Carbon-Coated Na3V2(PO4)3 Embedded in Porous Carbon Matrix: An Ultrafast Na-Storage Cathode with the Potential of Outperforming Li-Cathodes, Nano Letters, 14, 2175 (2014).(ESI高被引论文)
C. Zhu, X. Mu, J. Popovic, K. Weichert, P.?A. van Aken, Y.?Yu, and J.?Maier, Lithium Potential Variations for Metastable Materials: Case Study of Nanocrystalline and Amorphous LiFePO4, Nano Letters, 14, 5342 (2014).
C.?Zhu, K.?Weichert, and J.?Maier, Electronic Conductivity and Defect Chemistry of Heterosite FePO4, Adv. Funct. Mater., 21, 1917 (2011).
C. Zhu, L. Gu, L. Suo, J. Popovic, H. Li, Y. Ikuhara and J. Maier, Size-dependent staging and phase transition in LiFePO4/FePO4, Adv. Funct. Mater., 24, 312 (2014).
C.?Zhu, Y.-R. Wen, P.?A. van Aken, J.?Maier, and Y.?Yu, High Lithium Storage Performance of FeS Nanodots in Porous Graphitic Carbon Nanowires, Adv. Funct. Mater., 25, 2335 (2015).
C.?Zhu, X.-K. Mu, P.?A. van Aken, J.?Maier, and Y.?Yu, Fast Li Storage in MoS2-Graphene-Carbon Nanotube Nanocomposite: Advantageous Functional Integration of 0D-, 1D- and 2D-Nanostructures, Adv. Energy Mater., 5, ** (2015).(2015 ESI高被引论文)
C.?Zhu, P.?Kopold, W. Li, P.?A. van Aken, J.?Maier, and Y.?Yu, A General Strategy to Fabricate Carbon Coated 3D Porous Interconnected Metal Sulfides: Case Study of SnS/C Nanocomposite for High Performance Lithium and Sodium Ion Batteries
Advanced Science, 2, ** (2015). (封面文章) (2017 ESI热点论文)
C.?Zhu, C.?Wu, C.-C. Chen, P.?Kopold, P.?A. van Aken, J.?Maier, and Y.?Yu, A High Power-High Energy Na3V2(PO4)2F3 Sodium Cathode: Investigation of Transport Parameters, Rational Design and Realization, Chem. Mater. 29, 5207 (2017).
C.?Zhu, P.?Kopold, W. Li, P.?A. van Aken, J.?Maier, and Y.?Yu, Engineering Nanostructured Electrode Materials for High Performance Sodium Ion Batteies: Case Study of 3D Porous Interconnected WS2/C Nanocomposite, J. Mater. Chem. A, 2015, 3, 20487 - 20493.
C. Zhu, H. Cheng, Y. Yang, Electrochemical Characterization of Two Types of PEO-Based Polymer Electrolytes with Room-Temperature Ionic Liquids, J. Electrochem. Soc., 155, A569 (2008).
F.-J. Niu#, C.-L. Dong#, C.?Zhu# (共同一作), Y.-C. Huang, M.?Wang, J.?Maier, Y.?Yu, and S.-H. Shen, A novel hybrid artificial photosynthesis system using MoS2 embedded in carbon nanofibers as electron relay and hydrogen evolution catalyst, Journal of Catalysis, 352, (2017).
L.?Gu, C.?Zhu, H.?Li, Y.?Yu, C.?L. Li, S.?Tsukimoto, J.?Maier, and Y.?Ikuhara, Direct Observation of Lithium Staging in Partially Delithiated LiFePO4 at Atomic Resolution, J. Am. Chem. Soc., 133, 4661 (2011).
Y.?Yu, L.?Gu, C.?Zhu, P.?A. van Aken, and J.?Maier, Tin Nanoparticles Encapsulated in Porous Multichannel Carbon Microtubes: Preparation by Single-Nozzle Electrospinning and Application as Anode Material for High Performance Li-based Batteries, J. Am. Chem. Soc., 131, 15984 (2009). (ESI高被引论文)
Y.?Yu, L.?Gu, C.?Zhu, S.?Tsukimoto, P.?A.van Aken, and J.?Maier, Reversible Storage of Lithium in Silver-Coated Three-Dimensional Macroporous Silicon, Adv. Mater., 22, 2247 (2010). (ESI高被引论文)
Y.?Yu, L.?Gu, X.?Lang, C.?Zhu, T.?Fujita, M.?W. Chen, and J.?Maier, Li Storage in 3D Nanoporous Au-Supported Nanocrystalline Tin, Adv. Mater., 23, 2443 (2011).
K.?Weichert, W.?Sigle, P.?A. van Aken, J.?Jamnik, C.?Zhu, R.?Amin, T.?Acartürk, U.?Starke, and J.?Maier, Phase Boundary Propagation in Large LiFePO4 Single Crystals on Delithiation, J. Am. Chem. Soc., 134, 2988 (2012).
J. Liu, K. Song, C. Zhu, C. Chen, P. van Aken, J. Maier, and Y. Yu, Ge/C Nanowires as High-Capacity and Long-Life Anode Materials for Li-Ion Batteries, ACS Nano, 8, 7051 (2014).
S.?Chen, C.?Wu, L.?Shen, C.?Zhu, Y.?Huang, K.?Xi, J.?Maier, and Y.?Yu, Challenge and Perspectives for NASICON-Type Electrode Materials for Advanced Sodium-Ion Batteries, Adv. Mater., **, 2017.
X.?He, L.?Gu, C.?Zhu, Y.?Yu, C.?L. Li, Y.-S. Hu, H.?Li, S.?Tsukimoto, J.?Maier, Y.?Ikuhara, and X.?Duan, Direct Imaging of Lithium Ions Using Aberration-Corrected Annular-Bright-Field Scanning Transmission Electron Microscopy and Associated Contrast Mechanisms, Materials Express,1, 43 (2011).
H. Cheng, C. Zhu, M. Lu and Y. Yang, Spectroscopic and Electrochemical Characterization of the Passive Layer Formed on Lithium in Gel Polymer Electrolytes Containing Propylene Carbonate, J. Power sources, 173, 531(2007).
H. Cheng, C. Zhu, B. Huang, M. Lu and Y. Yang, Synthesis and Electrochemical Characterization of PEO-Based Polymer Electrolytes with Room Temperature Ionic Liquids, Electrochim. Acta,?52,5789(2007).
H. Cheng, C. Zhu, M. Lu and Y. Yang, In Situ Micro-FTIR Study of the Solid–Solid Interface between Lithium Electrode and Polymer Electrolytes, J. Power sources, 174, 1027(2007).
H. Cheng, C. Zhu and Y. Yang, FTIR Characterization of Ion Association and Phase Composition in PEO-based Polymer Electrolytes, ACTA CHIMICA SINICA, 65, 2832(2007).
A. Kuhn, O. Gerbig, C. Zhu, F. Falkenberg, J. Maier, and B. V. Lotsch, A new ultrafast superionic Li-conductor: Ion dynamics in Li11Si2PS12 and comparison with other tetragonal LGPS-type electrolytes, PCCP, 16, 14669(2014).
专利:
C. Zhu, Y. Yu, J. Maier. Method of manufacturing an electrode material, electrode material and vehicle comprising a battery including such an electrode material, PCT-international patent, 欧洲专利,已授权, EP**B1,2018.7.25.
朱昌宝,彭琨尧,一种碳包覆含氟电极材料Na3V2O2x(PO4)2F3-2x及其制备方法,9.7,已公开.
杨勇,张忠如,朱昌宝,基于磷位掺杂的磷酸铁锂正极材料及其制备方法,中国专利,已授权,专利号:CNC,2009.6.3.
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