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  • 李丽


    http://202.202.32.50:8080/_vsl/86CBC118E2ABE5E32B85C310EBB6C7C9/7B109FA9/2F3EB?e=.jpg

    李丽,女,博士,教授,硕士生导师,河南开封人。主要从事稀土掺杂的纳米发光材料和光电子薄膜材料等方面的研究。

    E-mail:lilic@cqupt.edu.cn

    电话:023-624717214

    办公室地址:二教学楼2523(理学院材料物理与信息显示实验室),重庆邮电大学,崇文路2号,重庆市南岸区400065

    教育背景:

    2003年6月毕业于河南师范大学物理学教育专业,并获得理学学士学位;

    2006年6月毕业于重庆大学凝聚态物理专业,并获得理学硕士学位,主要从事光电子薄膜材料方面的研究工作;

    2006年7月进入重庆邮电大学工作。

    2009年9月-2012年6月:中国科学技术大学获得博士学位。

    2016年1月-2017年1月:波兰科学院物理所从事博士后研究。

    教学情况:

    承担本科生课程:《数学物理方法》、《量子力学》、《原子物理学》、《大学物理》

    承担研究生课程:《理论物理基础》、《数学物理方法》、《先进材料制备技术》

    科研情况:

    目前在研国家自然科学基金1项,重庆市科委项目1项;重庆邮电大学博士启动基金1项。已结题重庆市自然科学基金项目1项,重庆市教委科学研究项目2项;重庆邮电大学青年教师科技基金项目1项。获得重庆市自然科学二等奖1项,重庆邮电大学第一届和第二届优秀科研成果一等奖各1项。

    目前在研的科研项目如下:

    1、国家自然科学基金项目:基于提升太阳能电池效率的表面等离子体激元增强的红外下转换发光玻璃研究(编号:11404047), 2015.01-2017.12,30万。

    2、重庆市基础与前沿研究计划一般项目:基于提升太阳能电池效率的近红外发光增强研究(cstc2016jcyjA0113),2016.07-2019.06,5万。

    发表SCI收录论文50余篇,ESI检索论文1篇,代表性论文如下:

    [1]Li Li*, Huihui Lin, Xiaoqi Zhao, Yongjie Wang, Xianju Zhou, Chonggeng Ma, Xiantao Wei, Effect of Yb3+concentration on upconversion luminescence in Yb3+,Tm3+co-doped Lu2O3nanophosphors, Journal of Alloys and Compounds, 586:555-560, 2014. ESI检索。

    [2]Li Li*, Xiaohua Tang,Yifei Zheng, Zhaojie Wu,WenxuanChang,Sha Jiang, Guotao Xiang,Xianju Zhou,Anovel dazzlingEu3+doped whitlockite-typephosphatered-emittingphosphor forwhite light-emitting diodes,Journal of the American Ceramic Society, 2018,DOI:10.1111/jace.15691.

    [3]Li Li*,Wenxuan Chang,Jia He, Yulong Yan,Min Cui, Sha Jiang, Guotao Xiang,Xianju Zhou,Molybdenum substitutionsimultaneouslyinduced band structure modulation and luminescence enhancement inLiLaMg(W,Mo)O6:Eu3+red-emitting phosphor for near ultravioletexcited white light diodes,Journal of Alloys and Compounds, 2018,763: 278-288.

    [4]Li Li*, Peixin Yang, Wenxuan Chang, Xiaohua Tang, Chen Li, Ziyu Zeng, Sha Jiang, Xianju Zhou,Multifunctional broad-band excited Eu3+-activated fluorescent materials for potential warm white light-emitting diodes (w-LEDs) and temperature sensor applications, Advanced Powder Technology, 2018, 29 :43-49.

    [5]Li Li*,Shaoke Fu, Yifei Zheng, Chen Li, Peng Chen, Guotao Xiang, Sha Jiang, Xianju Zhou, Near-ultraviolet and bluelightexcitedSm3+doped Lu2MoO6phosphor for potential solid state lighting and temperature sensing,Journal of Alloys and Compounds, 2018, 738:473-483.

    [6]Li Li*, Xiaohua Tang, Zhouqing Jiang, Xianju Zhou, Sha Jiang, Xiaobing Luo, Guotao Xiang, Kaining Zhou,NaBaLa2(PO4)3:A novel host lattice for Sm3+-doped phosphor materials emitting reddish-orange light, Journal of Alloys and Compounds, 2017, 701: 515-523.

    [7]Li Li, Y. J. Wang, D.X. Liu, C.G. Ma,M. G. Brik*, A. Suchocki, M. Piasecki, A.H. Reshak, Comparative first-principles calculations of the electronic, optical, elastic and thermodynamic properties of XCaF3(X=K, Rb, Cs) cubic perovskites, Materials Chemistry and Physics, 2017,188: 39-48.

    [8]Li Li*, Wenxuan Chang, Wuyang Chen, Zhongshan Feng, Chenglong Zhao, Pengfei Jiang, Yongjie Wang, Xianju Zhou, Andrzej Suchocki, Double perovskitLiLaMgWO6:Eu3+novel red-emitting phosphors for solid sate lighting: Synthesis, structure and photoluminescent properties, Ceramics International,2017, 43: 2720-2729.

    [9]Li Li*,Yu Pan, Wenxuan Chang, Zhongshan Feng, Peng Chen, Chen Li, Ziyu Zeng, Xianju Zhou, Near-infrared downconversion luminescence of SrMoO4:Tm3+,Yb3+phosphors, Materials Research Bulletin,2017, 93: 144-149.

    [10]Li Li*,Yu Pan, Xianju Zhou, Chenglong Zhao,Yongjie Wang, Sha Jiang, A.Suchocki, M.G. Brik, Luminescence enhancement in the Sr2ZnW1-xMoxO6:Eu3+,Li+phosphor for near ultraviolet based solid state lighting, Journal of Alloys and Compounds, 2016, 685: 917-926.

    [11]Li Li*, Jun Shen, Yu Pan, Xianju Zhou, He Huang,Wenxuan Chang,Qiwei He, Xiantao Wei, Enhancing luminescence of Lu2MoO6:Eu3+phosphors by doping with Li+ions for near ultraviolet based solid state lighting, Materials Research Bulletin,2016, 78:26-30.

    [12]Li Li, Xiaoqi Zhao, Ning Xiao, Yongjie Wang, Zhiliang Wang, Shuguagn Yang, Xianju Zhou*, Synthesis, structure and fluorescence studies of the lanthanide complexes with 4-fluorobenzoic acid, Inorganic Chimistry Acta,2015, 426: 107-112.

    [13]Li Li, Xianju Zhou, Xiantao Wei, Chong-Geng Ma, M.G. Brik*, Enhanced near-infrared quantum cutting in CaMoO4:Yb3+phosphors induced by doping with Li+ions for improving solar cells efficiency, Materials Chemistry and Physics, 147: 860-866, 2014.

    [14]Li Li, Xiantao Wei, Yonghu Chen, Changxin Guo, Min Yin*, Energy transfer in Tb3+,Yb3+codoped Lu2O3near-infrared downconversion nanophosphors, Journal of Rare earths, 2012, 30:197-201.

    [15]Li Li, Xiaochun Wang, Xiantao Wei, Min Yin*, Influence of precipitant solution pH on the structural, morphological and upconversion luminescent properties of Lu2O3:2%Yb,0.2%Tm nanopowders, Physica B, 2011, 406:609-613.

    [16]Li Li, Xiantao Wei, Xueqin Cao, Kaimo Deng, Qihong Chen, Yonghu Chen, Changxin Guo, Min Yin*, Upconversion luminescence enhancement in Yb3+/Tm3+-codoped Lu2O3nanocrystals induced by doping with Li+ions, Journal of Nanoscience and Nanotechnology, 2011,11(11): 9892-9898.

    [17]Li Li, Liang Fang, Xianju Zhou, Zi Yi Liu, Liang Zhao, Sha Jiang, X-ray photoelectron spectroscopy and thermoelectric properties of Al doped ZnO thin films,Journal of Electron Spectroscopy and Related Phenomena,2009, 173:7-11.

    [18]LiLi, Liang Fang,JunLiu, FengfanYang, QiujunLi, Gaobin Liu, Shijuan Feng,Influence of oxygen argon ratio on the structural, electrical, optical and thermoelectrical properties of Al-doped ZnO thin films, Physica E, 2008,41:169-174.

    [19]Li Li, Liang Fang, Ximing Chen, Gaobin Liu, Jun Liu, Fengfan Yang, Guangzong Fu, Chunyang Kong, Effect of annealing treatment on the structural, optical, and electrical properties of Al-doped ZnO thin films, Rare Metals, 2007, 26(3): 247-253.

    [20]Li Li, Liang Fang*, Kejun Liao, Guangzong Fu, Fengfan Yang, Gaobin Liu, Ruijian Zhang, Chunlan Cao, Weimin Chen, Seebeck and Magnetoresistive effects of Al-doped ZnO thin films,Journal of Crystal Growth, 2006, 287:101-104.