Associate ProfessorTel:
Email:xujx@hbut.edu.cn
IntroductionJinxia Xu, female, Ph.D., Associate Professor at the School of Science, Hubei University of Technology. She received her Ph.D. degree from Wuhan University in 2012, postdoctoral research at Wuhan University from 2014 to 2017, and worked as a visiting scholar at George Mason University (USA) from 2018 to 2019. Her research focuses on the fabrication of optoelectronic devices based on low-dimensional semiconductor nanomaterials and their applications in photoelectric, gas-sensing and photocatalytic properties. She has published more than 30 SCI research papers in prestigious journals including Nanotechnology, Analytical Chemistry, Journal of Applied Physics and Nanoscale Research Letters. She presided over and finished 1 NSFC project, 3 university research projects, 2 projects of Hubei Provincial Department of Science and Technology and 3 horizontal projects, and participated in some 10 national projects including NSFC and major special programs.
Education Experience2009.09-2012.06 Ph. D., Material Physics and Chemistry, Wuhan University
2003.09-2005.12 M. S., Condensed Matter Physics, Wuhan University
1999.09-2003.06 B. S., Physics, Ludong University
Work Experience2012- , Associate Professor Hubei University of Technolgy
2018-2019, Visiting scholar of George Mason University
2014-2017, Postdoctoral fellow of Wuhan University
2009-2012, PhD student of University of Wuhan University
Electrical and Electronic Engineering,Semiconductor Physics,Circuit Theory,Microelectronic Technology
Her research focuses on the fabrication of optoelectronic devices based on low-dimensional semiconductor nanomaterials and their applications in photoelectric, gas-sensing and photocatalytic properties.
[1] W. T. Zhang, J. X. Xu*, L. Y. Liu et al. Enhancing heat dissipation of IGBT by graphene reinforced paraffin thermal interface material, Journal of Thermophysics and Heat Transfer, 2025,39(4).
[2] Y. Tan, J. X. Xu*, Q. L. Li*, et al. Sensitivity-Enhanced, Room-Temperature Detection of NH3 with Alkalized Ti3C2Tx MXene. Nanomaterials 2024, 14, 680.
[3] Z. C. Fan, C. Xing, J. X. Xu*, Y. Tan, et al. The Effect of CO2-Doped Spiro-OMeTAD Hole Transport Layer on FA(1−x)CsxPbI3 Perovskite Solar Cells. Journal of Chemical Research. 2022;46(6).
[4] L. M. Wu,J. X. Xu*,Q. L. Li*, Z. C. Fan, F. Mei, Y. M. Zhou, J. Yan, Y. Chen, Enhanced performance of In2O3 nanowire field effect transistors with controllable surface functionalization of Ag nanoparticles, Nanotechnology 31 (2020) 355703.
[5] 吴黎明, 徐进霞*, 范志成, 等人. Pt对 In2O3纳米线场效应晶体管电学性能的影响研究. 材料导报(EI),35 (2021).
[6] J. X. Xu*,Z. H. Wang, L. M. Wu, F. Mei, Y. M. Zhou, J. Yan, Y. Chen, In situ investigation on the photoluminescence of 3D hierarchical branched CdS nanostructures coupling with Au nanoparticles, Mater. Res. Express 6 (2019) 105076.
[7] J. X. Xu, Z. H. Wang, W. Q. Li, X. G. Zhang, D. He, X. H. Xiao, Ag nanoparticls located on three-dimensional pine tree-like hierarchical TiO2 nanotube arrays film as high efficiency plasmonic photocatalysts, Nanoscale Research Letter, 2017,12(1):54.
[8] J. X. Xu, C. Chen, X. H. Xiao, L. Liao, L. Miao, W. Wu, F. Mei, A. L. Stepanov, G. X. Cai, Y. Liu, Z. G. Dai, F. Ren, C. Z. Jiang, J. R. Liu, Synergistic effect of V/N codoping by ion implantation on the electronic and optical properties of TiO2, Journal of applied physics, 2014, 115, 143106.
[9] J. X. Xu, X. H. Xiao, A. L. Stepanov, F. Ren, W. Wu, G. X. Cai, S. F. Zhang, Z. G. Dai, F. Mei, C. Z. Jiang, Efficiency enhancements in nanoparticles-SiO2-TiO2 sandwiched structure via plasmonic-effect enhanced light capturing, Nanoscale Research Letter, 2013, 8, 73.
[10] J. X. Xu, X. H. Xiao, A. L. Stepanov, F. Ren, F. Mei, W. Wu, G. X. Cai, C. Z. Jiang, Fabrication and characterization of Ag-implantation modificated TiO2 films followed with thermal annealing, Nuclear Instruments and Methods in Physics Research B, 2013, 307, 373.
[11] J. X. Xu, X. H. Xiao, F. Ren, X. D. Zhou, G. X. Cai, C. Z. Jiang, Fabrication and evolution of nanostructure in Al2O3 single crystals by Zn+ ions implantation and thermal annealing, vacuum 2013, 89, 132-135.
[12] J. X. Xu, X. H. Xiao, F. Ren, W. Wu, Z. G. Dai, G. X. Cai, S. F. Zhang, J. Zhou, F. Mei, C.Z. Jiang, Enhanced Photocatalysis by Coupling of Anatase TiO2 Film to Triangular Ag Nanoparticle Array,Nanoscale Research Letter, 2012, 7, 239.
Copyright © 2025 Institute of Low-Dimensional Quantum Materials, Hubei University of Technology.