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柴卉 教授 硕士生导师
2016-05-03 17:18  

柴卉 ____________________________________________________________________

 

  

D86

    

   职称/职务:教授硕士生导师

   专业:材料物理化学

   研究方向:材料电化学,纳米功能材料

 

 

 

 

 

联系方式:_________________________________________________________________

 箱:hchchh@sina.com

办公室:新疆大学逸夫楼219

 话:+86 09918588209

个人经历:_________________________________________________________________

2011.10-至今,新疆大学,应用化学研究所,硕士研究生导师

2008.7-2011.10,新疆大学,化学系,硕士研究生导师

2005.9-2008.6,华南理工大学,材料科学与工程学院,博士研究生/工学博士

2002.9-2005.6,新疆大学,化学系,硕士研究生/理学硕士

研究内容:____________________________________________________________________________

主要从事纳米功能材料的研究,特别是能源环境、电化学相关材料(超级电容器材料、新型碳材料、燃料电池电催化材料等)的设计合成及其应用研究

主持项目:_________________________________________________________________

1.国家自然科学基金,21461024多孔结构镍(氢)氧化物纳微米材料的调控合成及电容性能65 万元,在研,主持;

2. 国家自然科学基金,21346012基于新疆煤基多孔碳材料的制备及其电化学性能研究10 万元,已结题,主持;

3.教育部重点项目,210245特殊结构电化学材料的控制合成及其性能研究10 万元,已结题,主持;

4. 自治区优秀创新青年人才计划,2014721006多孔碳基材料的制备及超电容性能研究8万元,在研,主持;

5. 自治区自然科学基金,2015211c250石墨烯类微纳米复合材料的制备及电化学性能7 万元,在研,主持。

6. 新疆维吾尔自治区教育厅高校科研计划重点项目,XJEDU2014I008,多孔镍(氢)氧化物纳微米材料的合成及电容性能研究,7.5 万元,在研,主持。

奖励情况:_______________________________________________________________

1. 2018年获2017级新疆维吾尔自治区优秀硕士论文奖(指导老师)

2. 2017年获新疆大学青年科研奖

3.2016年获新疆维吾尔自治区第十四届自然科学优秀论文奖二等奖

4. 2014年获新疆维吾尔自治区第十四届自然科学优秀论文奖二等奖

5. 2011年获新疆维吾尔自治区科技进步一等奖

62010 年获新疆维吾尔自治区乌鲁木齐市科技进步一等奖

研究成果: __________________________________________________________________________

1.X. P., H. Chai, Y.L. Cao, Y.C. WangH. Dong, D.Z.Jia, W.Y. ZhouFacile synthesis of cost-effective Ni3(PO4)28H2O microstructures as a supercapattery electrode material, Mater. Today Energy, 2018,7,129-135.

2.X.J. MaH. Chai, Y.L. Cao, J.Y. Xu,Y.C. Wang,H. Dong, D.Z.Jia, W.Y. Zhou, An effective bifunctionalelectrocatalysts: Controlled growth of CoFe alloy nanoparticles supported on N-doped carbon nanotubes, J. Colloid. Interf. Sci., 2018, 514, 655-663.

3. M.P. Wei, H. Chai, Y.L. Cao,D.Z.Jia,Sulfonatedgraphene oxide as an adsorbent for removal of Pb2+and methylene blue. J. Colloid. Interf. Sci., 2018, 524, 297–305

4.H. Chai, M.P. Wei, Y. Su, Y.C. Wang,D.Z.Jia,Z.P. Sun, W.Y. Zhou,Facile Controlled Growth of Podetium-Like MnO2 Crystals andthe Catalytic Effect of MnO2/N-Doped Graphene on the OxygenReduction Reaction, Eur. J. Inorg. Chem., 2018, 1315–1321

5. H. Chai,Y.C. Wang, Y.C. Fang, Y.Lv, H. Dong, D.Z.Jia, W.Y. Zhou, Low-cost synthesis of hierarchical Co3V2O8 microspheres as high-performance anode materials for lithium-ion batteries, Chem. Eng. J., 2017,326,587-593.

6.H. Chai,H. Dong, Y.C. Wang,J.Y. Xu,D.Z.Jia,Porous NiCo2S4-halloysite hybrid self-assembled from nanosheets for highperformanceasymmetric suercapacitor applications, Appl. Surf. Sci., 2017, 401, 399-407.

7.H. Chai,J.Y. Xu,J.L. Han, Y. Su, Z.P. Sun, D.Z.Jia, W.Y. Zhou, Facile synthesis of Mn3O4-rGO hybrid materials for the high-performance electrocatalytic reduction of oxygen,J. Colloid. Interf. Sci., 2017, 488, 251-257.

8.H. Chai,X. P., T. Liu, X.H. Su, D.Z.Jia, W.Y. Zhou,High-performance supercapacitors based on conductive graphene combined with Ni(OH)2nanoflakes, RSC Adv., 2017,7,36617-36622

9.Y.C. Wang,H. Chai,H. Dong, J.Y. Xu,D.Z.Jia, W.Y. Zhou,Superior Cycle Stability Performance of Quasi-Cuboidal CoV2O6Microstructures as Electrode Material for SupercapacitorsACS Appl. Mater. Inter., 2016, 8 (40), 27291–27297.

10. Y. Su,H. Chai,Z.P. Sun,T. Liu,D.Z.Jia, W.Y. Zhou,High-performance manganese nanoparticles on reduced grapheneoxide for oxygen reduction reaction,Catal. Lett.,2016,146,1019-1026.

11. T. Liu, H. Chai,D.Z.Jia, Y. Su, T. Wang, W.Y. Zhou,Rapid microwave-assisted synthesis of mesoporous NiMoO4nanorod/reduced graphene oxide composites for high-performancesupercapacitors, Electrochim.Acta, 2015, 180,998-1006.

12. M. L. Zhou, H. Chai, D.Z. Jia, W.Y. Wan,Glucose-assisted synthesis of graphenenanosheets/NiO composite for high-performance supercapacitors, New J. Chem.,2014, 38(6):2320-2326

13. F. Yang, M.W. Xu, S.J. Bao, H. Wei, H. Chai,Self-assembled hierarchical graphene/polyaniline hybrid aerogels forelectrochemical capacitive energy storage, Electrochim.Acta, 2014, 137, 381-387.

14. X. Su, H. Chai, D.Z. Jia, S.J. Bao, W.Y. Wan, M.L. Zhou,  Effective microwave-assisted synthesis of grapheme nanosheets/NiO composite for high-performance supercapacitors,New J. Chem., 2013,37(2), 439-443.

15. C.C. Ji, M.W. Xu, S.J. Bao, Z.J. Lu, C.J. Cai,H. Chai, F. Yang, H. Wei, Self-assembly of three-dimensional interconnected graphene-based aerogels and its application in supercapacitors, J. Colloid. Interf. Sci., 2013,407, 416-424.

16. Z.J. Lu, M.W. Xu, S.J. Bao,H. Chai,Preparation and oxygen reduction performance of GNs-MnO2 composite, ActaChim. Sinica, 2013, 71(6), 957-961.

17. C.C. Ji, M.W. Xu, S.J. Bao, Z.J. Lu, C.J. Cai,H. Chai, R.Y. Wang, H. Wei, Self-assembled three-dimensional interpenetrating porous graphene aerogels with MnO2 coating and their application as high-performance supercapacitors, New J. Chem., 2013,37(12), 4199-4205.

18. Z.J. Lu, M.W. Xu, S.J. Bao,H. Chai,K. Tan, C.J. Cai, C.C. Ji, Q. Zhang, Facile preparation of nitrogen-doped reduced graphene oxide as a metal-free catalyst for oxygen reduction reaction, J. Mater. Sci., 2013,48(23), 8101-8107.

19.  H. Chai, X. Chen, D.Z. Jia, S.J. Bao, W.Y. Wan, Flower-like NiO structures: Controlled hydrothermal synthesis and electrochemical characteristic,Mater. Res. Bull., 2012, 47(12), 3947-3951.

20.  H. Chai, X. Chen, D.Z. Jia, W.Y. Wan,Electrochemical deposition of Ni(OH)2/CNTs electrode as electrochemical capacitors,Rare Metals,2011, 30, 85-89

授权的中国发明专利:

柴卉、周美玲、刘婷、贾殿赠,一种氢氧化钙部分取代氢氧化钾制备活性炭的方法,2014.12,中国发明专利,专利号ZL201410837854.5

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