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胡艳玲

来源:   时间:2020-09-29 

胡艳玲 简介

胡艳玲,女,博士,北京航空航天大学材料科学与工程专业学士学位硕士学位,美国康涅狄格大学冶金与材料工程学博士, 美国加州大学圣芭芭拉大学材料系博士后。博士期间主要利用透射电子显微镜研究Nb-Mo-Cr-Al-Si 高温合金和其他纳米材料的内部微观结构及稳定性的研究。博后期间在2014年诺贝尔物理奖获得者的中村修二(Shuji Nakamura)大组里工作,直接导师是Jame S. Speck教授,与中村修二教授和Speck教授有多篇合作论文发表,主要从事蓝宝石衬底HVPE非极性外延生长氮化镓膜内部缺陷的形成与表征、InGaN/GaN 太阳能电池、蓝光LED和激光器的量子阱生长,结构,及性能表征、In2O3/YSZ MBE生长和缺陷表征。近年来主要研究第三代半导体如氮化镓和纤锌矿氮氧化物的CVD制备及其在光催化领域的应用。已在《Inorganic Chemistry》、《Applied Physics Letters》、 《Scripta Materialia》、《Chemistry of Materials》、《Light: Science & Applications》等国内外学术期刊和国际会议上发表论文30余篇,其中《SCI》光盘、《EI》光盘收录20余篇;授权专利3项。获福建省科技进步二等奖1项。

主要研究领域:

1、氮化镓基蓝光LED, LD, 及太阳能电池量子阱的生长,结构,及性能表征

2InxGa1-xN纳米线电极的CVD构筑及其在光催化领域应用

3、氮氧化物和氮化物粉末的制备及其在光催化领域中的应用

近年来承担的主要科研项目:

1、国家自然科学基金委员会,青年科学基金项目, 51402249, In1-xGaxN纳米线电极的构筑及其光催化分解水制氢研究,2014-01至2017-12, 25万,结题,主持

2、国家自然科学基金委员会,青年科学基金项目, 51601163, CrAlVN/CrAlYN纳米多层硬质涂层抗高温氧化,高温摩擦磨损行为及机制研究,2017-01至2019-12,25万,结题,参与

3、福建省科技厅,福建省自然科学基金面上项目, 2017J01593,Ti/InGaN纳米线光催化电极的VLS-CVD制备,2017-04至2020-03,9万,结题,主持

4、厦门市人社局,2016年厦门市留学人员科研项目,【2016】314号-07,Ta/InxGa1-xN纳米线电极的构筑及可见光分解水制氢研究,2016-12至2018-12,5万,结题,主持

5、软化学与功能材料教育部重点实验室(南京理工大学),开放基金项目,30916014103,Ta/InxGa1-xN纳米线电极的构筑及可见光分解水制氢研究,2016-01至2017-12, 3万,结题,主持

近年来获专利情况:

1、 一种钽衬底上生长InxGa1-xN纳米线的光电极及其制备方法胡艳玲徐桂焰柏天程朱玉琴黄家亮纪华羽杨豪斌ZL 2017 1 1485380.2

2、 ZnO/ZnGaNO两相复合结构光催化粉末的制备方法胡艳玲郑贤庭杨豪斌徐桂焰林楠杨游煌陈国滨ZL 2015 1 0876332.0

3、 ZnGaNO-聚合物自清洁杂化膜及其制备方法吴慧青胡艳玲刘跃军曾达聪郑贤庭毛龙ZL 2016 1 0858388.8

4一种碳纤维原位负载氮化镓负极材料、制备方法及锂离子电池,胡艳玲,邹志敏,姜春海,纪华羽,朱玉琴,刘少康,ZL 201910152943.9

近年来发表的代表性学术论著:

1.  Synthesis of surface oxygen vacancy-rich (GaN)0.5(ZnO)0.5 particles with enhanced visible-light photodegradation performance, Yan-Ling Hu*, Sidun Wang, Zhengyan Zhang, Qingyuan Luo, Siwan Xiang, Yongfu Deng, Huayu Ji, Jialiang Huang, Lan Sun, Defa Wang, Tongmei Ma, Inorganic Chemistry, 2020, 59, 70127026.

2.  Fabrication of InxGa1-xN Nanowires on Tantalum Substrates by Vapor-Liquid-Solid Chemical Vapor Deposition, Yan-Ling Hu*, Yuqin Zhu, Huayu Ji, Qingyuan Luo, Ao Fu, Xin Wang, Guiyan Xu, Haobin Yang, Jiqiong Lian, Jingjing Sun, Dongya Sun, Defa Wang, Nanomaterials, 2018, 8, 990.

3.  ZnGaNO Photocatalyst Particles Prepared from Methane-Based Nitridation Using Zn/Ga/CO3 LDH as Precursor, Yan-Ling Hu*, Shuhua Ou, Jialiang Huang, Huayu Ji, Siwan Xiang, Yuqin Zhu, Zhibang Chen, Cheng Gong, Lan Sun, Jiqiong Lian, Dongya Sun, Yongsheng Fu, Tongmei Ma*, Inorganic Chemistry, 2018, 57, 9412-9424.

4.  ZnO/ZnGaNO heterostructure with enhanced photocatalytic properties prepared from a LDH precursor using a coprecipitation method, Yan-Ling Hu*, Zhi Wu, Xianting Zheng, Nan Lin, Youhuang Yang, Juan Zuo, Dongya Sun, Chunhai Jiang*, Lan Sun, Changjian Lin, Yongsheng Fu Journal of Alloys and Compounds 709 (2017) 42-53.

5.  Zinc-rich Ga1-xZnxN1-xOx solid solutions with tunable composition prepared from a constant-pH coprecipitation method,Hu Yanling*Wei Lihua,Zuo Juan,Sun Dongya,Jiang Chunhai,Fu Yongsheng,IOP Conf. Series: Materials Science and Engineering 2017,207, 012006.

6.  Effects of benzotriazole on the magnesium phosphate coatingZuo Juan, Guo Fen, Zhu Junqiu, Hu Yanling, Lin Changjian, Applied Surface Science,2015, 359,166-171.

7.  Preparation of hierarchically porous carbon spheres by hydrothermal carbonization process for high-performance electrochemical capacitors,Xiangjun Lu,Chunhai Jiang,Yanling HuHaichang Zhong,Yang Zhao,Xuecheng Xu,Hengzhou Liu,Journal of Applied Electrochemistry, 2018,48,233–241.

8.  One-step electrodeposition synthesis of a Ni-Fe-Sn electrode for hydrogen production in alkaline solution, Ji-Qiong Lian, Yi-Hui Wuc, Hou-An Zhang, Si-Yong Gu, Ying Chen, Ji-Dong Ma, Yan-Ling Hu, Materials Letters 2018,227,124–127

9.  Anti-phase Boundaries and Rotation Domains in In2O3 (001) Films Grown on Yttria-stabilized Zirconia (001), Y.-L. Hu, E. Rind, J. S. Speck, Journal of Applied Crystallography, 2014,47, 443-448

10.  Atomic Structure of a-plane {} Prismatic Stacking Faults in Nonpolar a-plane GaN Epitaxial Layers, Y.-L. Hu, S. Krämer, P. T. Fini, J. S. Speck, Applied Physics Letters, 2012, 101, 112102.

11.  Effect of Quantum Well Cap Layer Thickness on the Microstructure and Performance of InGaN/GaN Solar Cells, Y.-L. Hu, R. M. Farrell, C. J. Neufeld, M. Iza, S. C. Cruz, N. Pfaff, D. Simeonov, S. Keller, S. Nakamura, S. P. DenBaars, U. K. Mishra, and J. S. Speck, Applied Physics Letters, 2012, 100, 161101.

12.  Extended Defect Structure of a-plane GaN Produced by Sidewall Lateral Epitaxial Overgrowth, Y.-L. Hu, S. Kraemer, P. T. Fini, J. S. Speck, Journal of Crystal Growth, 2011, 331, 49.

13.  HAADF-STEM and TEM Investigation on the Structure of {2110} Prismatic Stacking Faults in a-Plane GaN,Y.-L. Hu, S. Krämer, P. T. Fini, J. S. Speck, Microscopy and Microanalysis (IF: 3.007), 2012, 18, 1342.

14.  Low damage dry etch for III-nitride light emitters,Joseph G Nedy, Nathan G Young, Kathryn M Kelchner, Yanling Hu, Robert M Farrell, Shuji Nakamura, Steven P DenBaars, Claude Weisbuch and James S SpeckSemicond. Sci. Technol. 2015,30,085019.

15.  Recent progress in metal-organic chemical vapor deposition of (000-1) N-polar group-III nitrides,Stacia Keller, Haoran Li,Laurent Matthew, Yanling Hu, Nathan Pfaff, Yan Wang, David Brown, Nicholas Fichtenbaum,James Speck, Steven DenBaars, Umesh Mishra, Semiconductor Science and Technology, 2014, 29, 113001.

16.  High Performance Thin Quantum Barrier InGaN/GaN Solar Cells on Sapphire and Bulk (0001) GaN Substrates Grown by MOCVD, N. G. Young, R. M. Farrell, Y.-L. Hu, Y. Terao, M. Iza, S. Keller, S. P. DenBaars, S. Nakamura, and J. S. Speck, Applied Physics Letters 2013, 103, 173903.

17.  Charge and Mobility Enhancements in In-Polar InAl(Ga)N/Al(Ga)N/GaN Heterojunctions Grown by Metal–Organic Chemical Vapor Deposition Using a Graded Growth Strategy,J. Lu, Y.-L. Hu, D. F. Brown, F. Wu, S. Keller, J. S. Speck, S. P. DenBaars, and U. K. Mishra, Japanese Journal of Applied Physics, 2012, 51, 115502.

18.  High Brightness Polarized Light Emitting Diodes, E. Matioli, S. Brinkley, K. Kelchner, Y.-L. Hu, S. Nakamura, S. DenBaars, J. S. Speck, and C. Weisbuch, Light: Science & Applications, 2012, 1(e22),1.

19.  Atom Probe Tomography of Compound Semiconductors for Photovoltaic and Light-Emitting Device Applications, P.-P. Choi, O. Cojocaru-Mirédin, D. Abou-Ras, R. Caballero, D. Raabe, V. S. Smentkowski, C. G. Park, G. H. Gu, B. Mazumder, M. H. Wong, Y.-L. Hu, T. P. Melo, and J. S. Speck, Microscopy Today, 2012, 20, 18.

20.  Double Embedded Photonic Crystals for Extraction of Guided Light in Light-emitting Diodes, J. Jewell, D. Simeonov, S.-C. Huang, Y.-L. Hu, S. Nakamura, J. S. Speck, and C. Weisbuch, Applied Physics Letters, 2012, 100, 171105.

21.  Gain Comparison in Polar and Nonpolar/semipolar Gallium-nitride-based Laser Diodes, T. Melo, Y.-L. Hu, C. Weisbuch, M. C. Schmidt, A. David, B. Ellis, C. Poblenz, Y.-D. Lin, M. R. Krames and J. W. Raring, Semiconductor Science and Technology, 2012, 27, 024015.

22.  Atomic Site Occupancies and Mechanical Response of the Eutectic C14 and A15 Phases in a Quinternary Nb-Mo-Cr-Al-Si Alloy, Y.-L. Hu, L.-C. Zhang, D. Shuman, B. D. Huey, M. Aindow, Scripta Materialia, 2009, 60, 309.

23.  Polymorphism in the Laves Phase Precipitates of a Quinternary Nb-Mo-Cr-Al-Si Alloy, Y.-L. Hu, A. Vasiliev, L.-C. Zhang, K. Song and M. Aindow, Scripta Materialia, 2009, 60, 72.

24.  Microstructure and Phase Stability in a Nb-Mo-Cr-Al-Si Alloy, Y.-L. Hu, A. Vasiliev, L.-C. Zhang, K. Song and M. Aindow, Journal of Material Science, 2008, 43, 7013.

25.  Modification of Carbon Aerogel Supports for PEMFC Catalysts,Smirnova, T. Wender, D. Goberman, Y.-L. Hu, W. Rhine and N.M. Sammes, International Journal of Hydrogen Energy, 2009, 34, 8892.

26.  Synthesis of Carbon Aerogel Supported Co-based PEMFC Catalysts Using Supercritical Ammonia,Smirnova, Y.-L. Hu, M. Aindow, D. Goberman, P. Menard, W. Rhine, AIChE Annual Meeting, 2008

27. Synthesis of Novel Electrode Materials Using Supercritical Fluids,Smirnova, Y.–L Hu, L.-C. Zhang, M. Aindow, P. Menard, P. Singh, D. Goberman, L. Shaw, X. Wan, W. Rhine, ECS Transactions, 2009, 19(21), 9

28. Fabrication of ZnO with Different Morphologies for Enhanced Photocatalytic Activity by Solvothermal Methods, L. Xu, Y.-L. Hu, C. Pelligra, C.-H. Chen, L. Jin, H. Huang, S. Sithambaram, M. Aindow, R. Joesten, and S. L. Suib, Chemistry of Materials, 2009, 21, 2875.

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