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河北工业大学材料科学与工程学院导师教师师资介绍简介-杨晓婧

本站小编 Free考研考试/2020-10-15


1.基本情况
博士、副教授、硕士生导师
河北工业大学材料科学与工程学院
地址:天津市红桥区光荣道29号河北工业大学南院
邮箱:yangxiaojing@hebut.edu.cn
2. 教育背景
2008.09-2011.06南开大学 化学学院 博士
2006.09-2008.06 南开大学 化学学院 硕士
2002.09-2006.06 河北大学 化学与环境科学学院 本科
3.研究领域
新能源材料、催化材料、纳米材料、电化学
4.主持/参与项目
(1)国家自然科学基金,面上项目,,CuM掺杂+负载TiO2纳米管光催化氨硼烷水解放氢性能研究,2019.1-2022.12,60万元,主持。
(2)国家自然科学基金,二元Ni基非贵金属纳米材料催化氨硼烷制氢性能研究(**),2014.1-2016.12,25万元,主持。
(3)河北省自然科学基金,NixM1-x(x = 0-1)非贵金属微纳材料制备及催化氨硼烷制氢性能研究(B),2013.1-2015.12,3万元,主持。
(4)国家自然科学基金,面上项目,**,锆基合金氧化物纳米管阵列的制备与性能研究,2013.1-2016.12,80万元,参与。
5.代表性论文(第一作者或通讯作者)
(1) C. Y. Wang, D. D. Sun, X. F. Yu, X. H. Zhang, Z.M. Lu, X. X. Wang,J. L. Zhao*, L. L. Li*, X. J. Yang*.Cu/Ni nanoparticles supported on TiO2(B) nanotubes as hydrogengeneration photocatalysts via hydrolysis of ammonia borane. Inorganic Chemistry Frontiers, 2018, 5,2038–2044.
(2) X. J. Yang*, C. Y.Wang, R. Y. Gao, Z. M. Lu, X. H. Zhang, X. F. Yu, L. L. Li*. Non-noble metallicnanoparticles supported on titania spheres as catalysts for hydrogen generationfrom hydrolysis of ammonia borane under ultraviolet light irradiation. Int. J. Hydrogen Energy, 2018, 43, 16556–16565.
(3) Q. L. Li, Y. Liu, X. F. Yu, L. L. Li*, X. H. Zhang, Z. M. Lu, J.Lin, X. J. Yang*, Y. Huang*. Removalof Cr(III)/Cr(VI) from wastewater using defective porous boron nitride: a DFTstudy. Inorganic Chemistry Frontiers,2018, 5, 1933–1940.
(4) W. L. Sang, C. Y. Wang, X. H. Zhang, X. F. Yu, C. Yu, J. L. Zhao,X. X. Wang, X. J. Yang*, L. L. Li*.Dendritic Co0.52Cu0.48 and Ni0.19Cu0.81 alloys as hydrogen generation catalystsvia hydrolysis of ammonia borane. Int. J.Hydrogen Energy, 2017, 42, 30691–30703.
(5) X. J. Yang*, L. L. Li,W. L. Sang; J. L. Zhao, X. X. Wang, C. Yu, X. H. Zhang, C. C. Tang, Boronnitride supported Ni nanoparticles as catalysts for hydrogen generation fromhydrolysis of ammonia borane. J. Alloys andComps., 2017, 693, 642–649.
(6) W. Shang, X. J. Yang*,X. H. Ji, Study on several problems of automatic full-field isoclinic parametermeasurement by digital phase shifting photoelasticity. Optik, 2015, 126: 1981–1985.
(7) X. J.Yang, F. Y. Cheng, Z. L. Tao, J. Chen. Hydrolytic dehydrogenation ofammonia borane catalyzed by carbon supported Co core-Pt shell nanopaticles. J. Power Sources, 2011, 196: 2785–2789.
(8) X. J. Yang, F. Y.Cheng, J. Liang, Z. L. Tao, J. Chen. Carbon- supported Ni1–x@Ptx (x = 0.32, 0.43, 0.60, 0.67, and 0.80)core–shell nanoparticles as catalysts for hydrogengeneration from hydrolysis of ammonia borane. Int. J. Hydrogen Energy, 2011, 36:1894–1990.
(9) X. J. Yang, F. Y.Cheng, J. Liang, Z. L. Tao, J. Chen. PtxNi1–x nanoparticles as catalysts for hydrogengeneration from hydrolysis of ammonia borane. Int. J. Hydrogen Energy, 2009, 34: 8785–8791.




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