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江浩
發布人: 網站管理員 發布時間: 2013-09-17 作者: 訪問次數: 2905

  

江浩

姓名

性別

出生年月

1980.12

職稱

教授、博導

所屬

教研室

超細材料

辦公室

地點

實驗十五樓503

E-mail

jianghao@ecust.edu.cn

聯系電話

64252055

招生專業

材料科學與工程

 

 

 主要科研經歷與簡歷:

 

198012月出生安徽桐城,20063月獲華東理工大學工業催化專業碩士學位,20096月獲得華東理工大學材料科學與工程專業博士學位,20099-20118月,新加坡南洋理工大學Temasek Laboratories, Research Scientist, 20119月回到華東理工大學任副研究員,20139月晉升教授。20127-9月,新加坡南洋理工大學訪問教授。

 

2012年入選上海市浦江人才計劃,2012年入選首屆華東理工大學青年英才,2013年入選教育部新世紀優秀人才,2013年入選上海市曙光學者。

 

 

 主要研究方向:新能源材料的可控制備、工程特征及過程放大。

 

 

 主要社會兼職:目前主要擔任多個國際雜志如:Adv. Mater.、Adv. Funct. Mater.、Small、ACS Nano、Chem. Commun.、J. Mater. Chem.、Carbon、Electrochem. Acta等審稿人。

 

 

    主要成果

         主要從事新能源材料的制備及應用,建立材料微結構與電化學性能之間的構效關系。申請者首先發展了界面限域控制制備雜化結構電極材料的新思路,利用多巴胺構筑固液反應界面,借助于聚多巴胺功能基團與金屬離子絡合反應生成金屬有機化合物,通過碳化控制制備了金屬氧化物嵌入介孔碳納米雜化材料,表現出介孔碳高功率特性和金屬氧化物高容量特性之間的強耦合效應,顯著提高了金屬氧化物的大電流充放電能力和循環穩定性;提出了結構導向劑誘導晶面生長與反應工藝條件協同調控材料結構的新方法,使反應器內溫度和濃度場滿足材料特定結構生長所需要的動力學條件,創新性地制備了氧化錳空心圓錐體以及多種超細超薄層狀化合物,顯著提高了材料的電化學活性;基于電極材料之間的協同效應和界面耦合作用,利用高錳酸鉀構筑固液反應界面,借助其強氧化性組裝了多種三維結構的多元復合電極材料,復合材料的電化學性能明顯優于單一組分。

    主持國家自然科學基金、教育部科學技術研究項目、上海市基礎研究重點、上海市曙光學者等項目。作為第一作者或通訊作者在Adv. Mater.、ACS NANO、Energy Environ. Sci.、Chem. Commun.、J. Mater. Chem.、Nanoscale等期刊上發表SCI收錄論文30余篇,SCI他引超過1000次;影響因子大于6.0的論文19,8篇論文入選ESI “Highly cited papers”,1篇入選ESI"Hot paper"。發表在Adv. Mater. (2012, 24: 4197)上的論文被選為“Frontispiece”、“Hot Topics”;發表在J. Mater. Chem. (2011, 21: 3818)被選為“Cover”“Hot article”;發表在Energy Environ. Sci. (2013, 6, 41)J. Mater. Chem. (2012, 22: 2751)上的論文均被選為 “Top 10 most read articles”;發表在RSC Adv. (2011, 1: 954)被選為“Top 10 most accessed articles”。國際會議主題報告和邀請報告6次。申請中國發明專利9項,授權4項。

 

 

近年來發表的代表性論文

 

 

      Hao Jiang, Pooi See Lee, Chunzhong Li*, Three-dimensional carbon based nanostructures for advanced supercapacitors, Energy Environ. Sci., 2013, 6, 41-53.Top 10 most-read articles in Jan. 2013, ESI highly cited paper, ESI hot paper

2         Yihui Dai, Hao Jiang*, Yanjie Hu, Chunzhong Li*, Hydrothermal synthesis of hollow Mn2O3 nanocones as anode material for Li-ion batteries, RSC Adv., 2013,DOI: 10.1039/C3RA42664E.

3        Zhengju Zhu, Yanjie Hu, Hao Jiang*, Chunzhong Li*, A three-dimensional ordered mesoporous carbon/carbon nanotubes nanocomposites for supercapacitors, J. Power Sources, 2014, 246, 402-408.

      Hao Jiang, Jan Ma, Chunzhong Li*, Mesoporous carbon incorporated metal oxides nanomaterials as supercapacitor electrodes, Adv. Mater., 2012, 24, 4197-4202. (Hot topics, Frontispiece, MaterialsViews: AM Top 40, Rank 6, 11 for 16, 23 May and Rank 12 for 16  Aug. 2012

5       Hao Jiang, Jan Ma, Chunzhong Li*, Polyaniline/MnO2 coaxial nanocable with hierarchical structure for high-performance supercapacitors, J. Mater. Chem., 2012, 22, 16939-16942.

      Hao Jiang, Chunzhong Li*, Ting Sun, Jan Ma, Hierarchical porous NiCo2O4 nanowires for high-rate supercapacitors, Chem. Commun., 2012, 48, 4465-4467. ESI highly cited paper

      Hao Jiang, Chunzhong Li, Ting Sun, Jan Ma, High-performance supercapacitor material based on Ni(OH)2 nanowire-MnO2 nanoflakes core/shell nanostructures, Chem. Commun., 2012, 48, 2606-2608.

     Hao Jiang, Ting Sun, Chunzhong Li, Jan Ma, Hierarchical porous nanostructures assembled from ultrathin MnO2 nanoflakes with enhanced supercapacitive performances. J. Mater. Chem. 2012, 22, 2751-2756.Top 10 most-read articles in Dec. 2011, ESI highly cited paper

      Hao Jiang, Chunzhong Li, Ting Sun, Jan Ma, A green and high energy density asymmetric supercapacitor based on ultrathin MnO2 nanostructures and functional mesoporous carbon nanotube electrodes. Nanoscale, 2012, 4, 807-812.

10      Hao Jiang,Liping Yang, Chunzhong Li, Chaoyi Yan, Pooi See Lee, Jan Ma, High-Rate Electrochemical Capacitors from Highly Graphitic Carbon–Tipped Manganese Oxide/Mesoporous Carbon/ Manganese Oxide Hybrid Nanowires. Energy Environ. Sci., 2011, 4, 1813-1819.ESI highly cited paper

11     Hao Jiang, Ting Zhao, Jan Ma, Chaoyi Yan, Chunzhong Li, Ultrafine Manganese Dioxide Nanowire Network for High-Performance Supercapacitors, Chem. Commun. 2011, 47, 1264-1266.ESI highly cited paper

12      Hao Jiang, Ting Zhao, Jan Ma, Chunzhong Li, Functional mesoporous carbon nanotubes and their integration in situ with metal nanocrystals for enhanced electrochemical performances. Chem. Commun. 2011, 47, 8590-8592.

13     Hao Jiang, Ting Zhao, Chunzhong Li, Jan Ma, Hierarchical Self-Assembly of Ultrathin Nickel Hydroxide Nanoflakes for High-Performance Supercapacitors. J. Mater. Chem. 2011, 21, 3818-3823.IF: 5.968Cover, Hot article, ESI highly cited paper

14      Hao Jiang, Ting Sun, Chunzhong Li, Jan Ma, Peapod-like nickel@mesoporous carbon core-shell nanowires: a novel electrode material for supercapacitors. RSC Advances, 2011, 1, 954-957.Top 10 most accessed articles in Sept. 2011

15      Hao Jiang, Ting Zhao, Chaoyi Yan, Jan Ma, Chunzhong Li, Hydrothermal Synthesis of Novel Mn3O4 Nano-Octahedrons with Enhanced Supercapacitors Performances, Nanoscale, 2010, 2, 2195-2198.

16      Hao Jiang, Junqing Hu, Chunzhong Li, Feng Gu, Jan Ma, Large-Scale, Uniform, Single-Crystalline Cd(OH)2 Hexagonal Platelets for Cd-based Functional Applications. CrystEngComm, 2010, 12, 1726-1729.

17      Hao Jiang, Junqing Hu, Feng Gu, Chunzhong Li, Hydrothermal Synthesis of Novel In2O3 Hollow Microspheres for Gas Sensors, Chem. Commun., 2009, 3618-3620.

18      Hao Jiang, Junqing Hu, Feng Gu, Chunzhong Li, Stable field emission performance from urchin-like ZnO nanostructures, Nanotechnology, 2009, 20, Art. No. 055706.

19      Hao Jiang, Junqing Hu, Feng Gu, Chunzhong Li, Self-assembly of solid or tubular ZnO rods into twinning microprisms via a hydrothermal route, J. Alloys and Compd., 2009,478, 550-553.

20      Hao Jiang, Junqing Hu, Feng Gu, Chunzhong Li, Free-Template Approach for the Fabrication of ZnO Microspheres via a Hydrothermal Route, Particuology, 2009, 7, 225-228.

21      Hao Jiang, Junqing Hu, Feng Gu, Chunzhong Li, Self-assembly of ZnO nanorod bundles into flowerlike architectures by a simple hydrothermal route, J. Inorg. Mater. 2009, 24, 69-72.

22      Hao Jiang, Junqing Hu*, Feng Gu, Chunzhong Li*, Large-scaled, uniform, monodispersed ZnO colloidal microspheres, J. Phys. Chem. C. 2008, 112, 12138-12141.

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