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上海交通大学化学化工学院导师教师师资介绍简介-宰建陶

本站小编 Free考研考试/2021-01-02

宰建陶

宰建陶 博士、 副教授
电话:+86-
email:zaijiantao@sjtu.edu.cn
Researcher ID: http://www.researcherid.com/rid/I-8703-2012

教育经历
2003.9-2007.7上海交通大学,应用化学专业,获理学学士学位;
2007.9-2012.10上海交通大学,应用化学专业(直博生),获工学博士学位;
荣获上海市优秀毕业生。
工作经历
2014.1-至今上海交通大学,化学化工学院,助理研究员、副教授
2012.11-2013.12美国宾夕法尼亚州立大学,博士后研究

获奖情况
u 2018 上海市启明星计划(A类)
u 2015 上海市自然科学奖一等奖(第五)
u 2013 上海市晨光计划
u 2012 上海市优秀毕业生

教学工作
承担《无机与分析化学实验》、《化学原理实验》等基础化学教学任务,作为主要成员参与本科生校教改项目《以学生为中心的问题式实验教学研究》,正在建设《化学原理与分析化学实验》荣誉课程。指导本科生创新实践计划21人次,优秀率超过50%,本科毕业论文4人次优良率100%。

科研工作
从事无机固体材料,特别是微纳米、多组分功能材料的设计合成和性能研究。立足于无机固体能源材料的设计合成,以光/电化学催化在能源领域的应用为背景,通过设计具有特殊组成和结构的无机功能材料,利用掺杂、缺陷、相变和形成半导体结等调控材料的能级结构、电荷分布和态密度等电特性,结合材料结构的优化调控物质扩散动力学,最终提高可再生能源的利用、转化和存储功效。
发表论文70余篇,其中(共同)第一作者和通讯作者论文49篇, 5篇论文入选ESI高水平论文。已发表论文他引总计1821次,H指数27。获得中国国家授权发明专利12项。
主持科研项目7项:国家自然科学基金青年基金(**)、973计划二级课题(2014CB239702)、上海市自然科学基金探索类项目(17ZR**)、上海市晨光计划(13CG10)、湖北省地质局科研项目(KJ2017-27)、上海交通大学新进教师启动计划和稀土资源利用国家重点实验室(RERU**)等,总经费163.6万元,已到校经费158.4万元。参与上海市科委和企业委托研发项目3项。
ESI高被引论文:
1.Li Xiaomin, Feng Zhenxing, Zai Jiantao*, Ma Zi-Feng, and QianXuefeng*, Incorporation of Co into MoS2/graphenenanocomposites: One effective way to enhance the cycling stability of Li/Nastorage. Journal of PowerSources, 2018. 373: p. 103-109.
2. Zai Jiantao,Cao Fenglei, Liang Na, Yu Ke, Tian Yuan, Sun Huai, Qian Xuefeng*. Rose-likeI-doped Bi2O2CO3 microspheres with enhancedvisible light response: DFT calculation, synthesis and photocatalyticperformance. Journal of HazardousMaterials, 2017, 321464.
3. Zai Jiantao,Qian Xuefeng*. Three dimensional metal oxides-graphene composites and theirapplications in lithium ion batteries. Rsc Advances, 2015,5 (12): 8814.
4.Liang Na, Zai Jiantao*, Xu Miao,Zhu Qi, Wei Xiao, Qian Xuefeng*. Novel Bi2S3/Bi2O2CO3 heterojunction photocatalysts with enhanced visible light responsiveactivity and wastewater treatment. Journalof Materials Chemistry A, 2014, 2 (12): 4208.
5. Zai Jiantao, Wang Kaixue, Su Yuezeng, Qian Xuefeng*, and ChenJiesheng, High stability and superiorrate capability of three-dimensional hierarchical SnS2 microspheresas anode material in lithium ion batteries. Journal of Power Sources, 2011. 196(7): 3650.
6.Tao Liqi, Zai Jiantao, Wang Kaixue,Zhang Haojie, Xu Miao, Shen Jie, Su Yuezeng, and Qian Xuefeng*, Co3O4 nanorods/graphene nanosheets nanocomposites for lithium ion batteries withimproved reversible capacity and cycle stability. Journal of Power Sources, 2012. 202: 230.

代表性论文:
7.He Kai, Tadesse Tsega Tsegaye, Liu Xi, ZaiJiantao*, Li Xin-Hao, Liu Xuejiao, Li Wenhao, Ali Nazakat, and QianXuefeng*, Utilizing the Space-charge Region of FeNi-LDH/CoP p-n Junction toPromote the Performance in Oxygen Evolution Electrocatalysis. AngewandteChemie, 10.1002/anie.
8.Ma Dui, Hu Bo, Wu Wenda, Liu Xi, ZaiJiantao*, Shu Chen, Tadesse Tsega Tsegaye, Chen Liwei, Qian Xuefeng*, andLiu T. Leo*, Highly active nanostructured CoS2/CoS heterojunctionelectrocatalysts for aqueous polysulfide/iodide redox flow batteries. Naturecommunications, 2014, 10 3367.
9.Dai Fang?, Zai Jiantao?, Yi Ran, Gordin Mikhail L., Sohn Hiesang, Chen Shuru,Wang Donghai Bottom-up synthesis of high surface area mesoporous crystallinesilicon and evaluation of its hydrogen evolution performance. NatureCommunication, 2014, 5 3605. 共同第一作者
10.Li Xiaomin, Zai Jiantao*, XiangShijie, Liu Yuanyuan, He Xiaobo, Xu Zheying, Wang Kaixue, Ma Zifeng, QianXuefeng*. Regeneration of Metal Sulfides in the Delithiation Process: The Keyto Cyclic Stability. AdvancedEnergy Materials, 2016,
11.Huang Shoushuang, Zai Jiantao*, MaDui, He Qingquan, Liu Yuanyuan, Qiao Qiquan, Qian Xuefeng*. Colloidal synthesisof wurtz-stannite Cu2CdGeS4 nanocrystals with highcatalytic activity toward iodine redox couples in dye-sensitized solar cells. Chemical Communications, 2016, 52 (72): 10866.
12.Li Bo, Qi Rongrong*, Zai Jiantao*,Du Feihu, Xue Chi, Jin Ying, Jin Chengyou, Ma Zifeng, Qian Xuefeng*. SilicaWastes to High-Performance Lithium Storage Materials: A Rational Designed Al2O3 Coating Assisted Magnesiothermic Process. Small, 2016,12(38):5281
13.Huang Shoushuang, He Qingquan, ChenWenlong, Zai Jiantao*, Qiao Qiquan*, Qian Xuefeng*. 3D hierarchical FeSe2 microspheres: Controlled synthesis and applications in dye-sensitized solarcells. Nano Energy, 2015,15 (0): 205.
14.Chen Wenlong, Wang Min, Qian Tianyue, CaoHongliang*, Huang Shoushuang, He Qingquan, Liang Na, Wang Cheng*, ZaiJiantao*. Rational design and fabrication of skeletal Cu7S4 nanocages for efficient counter electrode in quantum dot-sensitized solarcells. Nano Energy, 2015, 12 (0): 186
15.Xiao Yinglin, Zai Jiantao*, LiXiaomin, Gong Yong, Li Bo, Han Qianyan, Qian Xuefeng*. Polydopaminefunctionalized graphene/NiFe2O4 nanocomposite with improvingLi storage performances. NanoEnergy, 2014, 6 (0):51.
16.Huang Shoushuang, He Qingquan, ZaiJiantao*, Wang Min, Li Xiaomin, Li Bo, Qian Xuefeng*. The role ofMott-Schottky heterojunctions in PtCo-Cu2ZnGeS4 ascounter electrodes in dye-sensitized solar cells. Chemical Communications, 2015, 51 (43): 8950.
17.He Qingquan, Huang Shoushuang, ZaiJiantao*, Tang Nianqi, Li Bo, Qiao Qiquan, Qian Xuefeng*. Efficient CounterElectrode Manufactured from Ag2S Nanocrystal Ink for Dye-SensitizedSolar Cells. Chemistry – A EuropeanJournal, 2015, 21(43): 15153.
18.Huang Shoushuang, He Qingquan, ChenWenlong, Qiao Qiquan*, Zai Jiantao*, Qian Xuefeng*. Ultrathin FeSe2 Nanosheets: Controlled Synthesis and Application as a Heterogeneous Catalyst inDye-Sensitized Solar Cells. Chemistry– A European Journal, 2015,21 (10): 4085.
19.Xu Miao, Wang Min, Ye Tiannan, Liang Na,Jin Lun, Zai Jiantao*, Qian Xuefeng*. Cube-in-Cube Hollow Cu9S5 Nanostructures with Enhanced Photocatalytic Activities in Solar H2 Evolution. Chemistry – A EuropeanJournal, 2014, 20(42): 13576.
20.Wang Min, Chen Wenlong, Zai Jiantao*,Huang Shoushuang, He Qingquan, Zhang Wei, Qiao Qiquan*, Qian Xuefeng*.Hierarchical Cu7S4 nanotubes assembled by hexagonalnanoplates with high catalytic performance for quantum dot-sensitized solarcells. Journal of Power Sources,2015, 299 212.
21.Xu Miao, Ye Tiannan, Dai Fang, Yang Jindi,Shen Jingmei, He Qingquan, Chen Wenlong, Liang Na, Zai Jiantao*, QianXuefeng*. Rationally Designed n–n Heterojunction with Highly Efficient SolarHydrogen Evolution. ChemSusChem,2015, 8 (7): 1218.
22.He Qingquan, Huang Shoushuang, Wang Cheng,Qiao Qiquan*, Liang Na, Xu Miao, Chen Wenlong, Zai Jiantao*, Qian Xuefeng*.The Role of Mott–Schottky Heterojunctions in Ag–Ag8SnS6 as Counter Electrodes in Dye-Sensitized Solar Cells. ChemSusChem, 2015,8 (5): 817.
23.Liu Xuejiao, Zai Jiantao*, Li Bo,Zou Jian, Ma Zifeng, Qian Xuefeng. Na2Ge4O9 nanoparticles encapsulated in 3D carbon networks with long-term stability andsuperior rate capability in lithium ion batteries. Journal of Materials Chemistry A,2016, 4 (27): 10552.
24.He Qingquan, Qian Tianyue, Zai Jiantao*, Qiao Qiquan, HuangShoushuang, Li Yiran, Wang Min. Efficient Ag8GeS6 CounterElectrode Prepared From Nanocrystal Ink for Dye-Sensitized Solar Cells. Journal of Materials Chemistry A, 2015,3 (40): 20359
25. Zai Jiantao,Liu Yuanyuan, Li Xiaomin, Ma Zi-feng, Qi Rongrong*, Qian Xuefeng*. 3Dhierarchical Co-Al layered double hydroxides with long-term stability and highrate performances in supercapacitors. Nano-MicroLetters, 2017, 9: 21.
26.WangMin, Zai Jiantao*, Li Bo, Wang Yan,Huang Shoushuang, He Qingquan, Qian Xuefeng*. Hierarchical Cu2-XSenanotubes constructed by two-unit-cell-thick nanosheets: room-temperaturesynthesis and promoted electrocatalytic activity towards polysulfides. Journalof Materials Chemistry A, 2016,4 (13): 4790.
27.LiangNa, Wang Min, Jin Lun, Huang Shoushuang, Chen Wenlong, Xu Miao, He Qingquan, Zai Jiantao*, Fang Nenghu, QianXuefeng*. High efficient Ag2O/Bi2O2CO3 p-n heterojunction photocatalysts with improved visible light responsiveactivity. ACS Applied Materials & Interfaces, 2014, 6 (14): 11698.







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