北京交通大学硕士研究生导师信息:颜鲁婷

2026-08-25 17:06:00来源: 网络

  在读研期间,所有与你读研相关的事情,可能都需要经过你的导师同意,所以说,选择导师真的很重要,也希望大家能够认真对待这件事,怎样才能选择适合自己的导师呢?这就要我们提前做足功课,尽可能多的搜集有关你准备报考的导师的信息,下面新东方在线考研频道为大家分享:“北京交通大学硕士研究生导师信息:颜鲁婷”文章。

  颜鲁婷

  博士 、教授

  基本信息

  办公电话:86-10-51683627电子邮件: ltyan@bjtu.edu.cn

  通讯地址:邮编:

  教育背景

  2000-2003 清华大学,材料科学与工程系,博士;

  1997-2000 北京理工大学,化工与材料学院,硕士;

  1993-1997 曲阜师范大学,化学系,学士

  工作经历

  2014.8-2015.8 澳大利亚UNSW,OPV课题组访问学者

  2009.6-2010.8 荷兰乌特列支大学Nanophotonics课题组访问学者

  2016.1-至今 北京交通大学理学院,化学系 教授

  2005-2015 北京交通大学理学院,化学系 副教授

  2003-2005 北京交通大学,理学院化学系 讲师

  研究方向

  材料工程

  材料表面技术及功能材料

  光电材料及其应用

  微纳光电子器件与技术

  招生专业

  材料工程硕士

  材料科学与工程硕士

  光学工程博士

  材料工程博士

  科研项目

  1.北京交通大学横向:大面积轻量化宽频率高性能电磁屏蔽膜的研发,2024.12-2027.12,30.0 万,主持

  2.北京交通大学横向:一种高效分解水产氢光催化剂的制备,2024.3-2025.3,10.0万,主持

  3北京交通大学横向:.环保型纳米材料极压抗磨剂的研制,2023.3-2025.3,28.0万,主持

  4.自然科学基金面上项目:电子束辐照改性聚多巴胺用于聚合物太阳能电池界面设计及调控的研究,2015.01-2018.12, 82万,主持

  5.基本科研业务费:梯度核-壳纳米线的制备及其在太阳能电池中的应用,2013-01-01--2014-12-31,7.0万元,主持

  6.北京交通大学:甲醇制丙烯联产汽、柴油技术的开发,2011-04-08--2015-04-07,100.0万元,参加

  7.基本科研业务费:复合结构染料敏化太阳能电池的研究,2009-12-01--2012-12-31,10.0万元,主持

  8.基本科研业务费:聚合物及有机染料敏化太阳能电池材料及器件的研究,2009-12-01--2012-12-31,10.0万元,参加

  9.国家自然科学基金"青年基金":基于四针ZnO晶须三维网络结构的杂化太阳能电池的制备研究,2010-01-01--2012-12-30,25.0万元,主持

  10.教育部“新世纪优秀人才”:新世纪优秀人才支持计划,2009-01-01--2011-12-31,50.0万元,参加

  11.教育部“重点”:有机/无机复合型太阳能电池的研制,2009-01-01--2010-12-31,10.0万元,参加

  12.北京交大创新科技中心:适用于墙体保温的相变材料的微胶囊技术研究,2008-04-21--2008-10-31,10.0万元,参加

  13.北京交通大学:高性能磷酸亚铁锂的制备,2008-01-01--2008-12-31,2.0万元,主持

  14.北京市自然基金“面上”:ZrO2微球的制备及电场诱导下的可控分选与组装,2007-01-01--2007-12-30,4.0万元,参加

  15.北京交大创新科技中心:新型氮氧化物的试验研究,2006-05-01--2006-12-31,3.0万元,参加

  16.校科技基金:新型高效液相色谱手性固定相研究,2005-01-01--2006-12-30,2.0万元,参加

  17.北京交通大学横向:单分散纳米陶瓷粉体的制备,2004-03-01--2005-03-30,2.0万元,主持

  18.校科技基金:纳米粉体表面聚合改性,2004-01-01--2004-12-30,0.7万元,主持

  教学工作

  主讲 无机化学、工科化学、复合材料、超微细粉体的表面改性与分散 等课程

  论文/期刊

  (1) Moxi Yele, Gegen Sarula, Jie Yang, Long Yang, Hao Zhang, Longfu Chen, Xiangmei Zhang, Jiahui Wang, Tianyu Wang, Chengzhong Jin, Benliang Liang*, Luting Yan*. Integrated structural-functional MXene-GNs/ANF flexible composite film with enhanced thermal conductivity and electromagnetic interference shielding performance. Journal of Materials Science & Technology 2025, 165. https://doi.org/10.1016/j.jmst.2025.04.014

  (2) J Wang,W Ming,L Chen,T Song,M Yele,H Zhang,L Yang,G Sarula,B Liang*,L Yan*, G Wang*. MoS2 Lubricate-Toughened MXene/ANF Composites for Multifunctional Electromagnetic Interference Shielding [J]. Nano-Micro Letters, 2025, 17(1): 36.

  (3) Liu K, Qu YZ, Zhang D, Liang BL, Yan LT*. The potential of the synergistic use of SiO2@Silane-PEG with molybdenum dialkyldithiocarbamate in water-based drilling fluid[J].Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025, 709, 136101. .DOI:10.1016/j.colsurfa.2025.136101.

  (4) Chen XY.,Liu K, Duan SJ, Liang BL*, Y Yan LT*.In situ growth of Cd0.6Zn0.4S on graphene guided by ion anchoring for boosting hydrogen production. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2025,704,135493

  (5) Chen XY., Liang BL*, Y Yan LT*. Improvement in the Photocatalytic Hydrogen Production of Flower-Shaped ZnIn2S4 by Surface Modification with Amino Silane. Catalysts 2024, 14, 607

  (6) Wang YD, Hao CS, Duan SJ, Liang BL, Yan LT*. Threedimensional graphene gel/carbon cloth electrode for detection of Cu2+ through two electrochemical methods of interactive verification. J Mater Sci: Mater Electron, 2024,35,403.

  (7) Duan SJ, Chen XY, Liu B, Liang BL, Dai CA. Yan LT*, Guo JP*. Fabrication and performance of a 3D porous graphene aerogel-supported Ni–ZnS composite photocatalyst Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024,682,132948

  (8) Hao CS, Wang YD, Wu HP, Duan SJ, Liu B, Yan LT*.Trace Cu2+ detection based on GH-PEDOT:PSS-Pt NP-modified glassy carbon electrode. J Mater Sci: Mater Electron, 2024, 35,56

  (9) Guo H, Hao CS, Dai CA, An XY,Yan LT. A ZnO:POMs composite electron transport layer for efficient PTB7:PC71BM polymer solar cells[J]. Journal of Materials Science: Materials in Electronics, 2022, 33(36):27158-27168.

  (10) Yanyun Zhu, Chunai Dai, Changshi Hao, Hao Guo, Luting Yan. Purification of nitrogen-doped graphene quantum dots and its application in polymer solar cells, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022,648: 129401. /doi.org/10.1016/j.colsurfa.2022.129401.

  (11) Xiaodong Song , Luting Yan , Chunai Dai , Changshi Hao , Hao Guo Mingming Xie,Yaru Zhang. Preparation of complementary electrochromic devices with WO 3 /PANI and NiO/PB double-hybrid electrodes, J Mater Sci: Mater Electron, 2022, 2022, 33(10):8292-8304.

  (12) Yin L, Yan LT, Hao CS, Bai YH, Guo H. Adsorption and trace detection of copper ion by three-dimensional porous graphene composite gel. J Mater Sci: Mater Electron, 2022, 33:1966–1976

  (13) Li YT , Yan L , Zhang L, Song X, Dai C. Design of electrochromic supercapacitor based on rGO–W18O49 nanowires/polyaniline[J]. Journal of Materials Science: Materials in Electronics, 2021, 32(14):19179-19190.

  (14) Yanyun Zhu, Luting Yan, Mingyuan Xu, Yuting Li, Xiaodong Song, Lan Yin, Difference between ammonia and urea on nitrogen doping of graphene quantum dots, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021, 610,125703, /doi.org/10.1016/j.colsurfa.2020.125703.

  (15) Xu R , Yan L , Zhu Y , et al. Modification and SERS Optimization of Triangular Ag Nanoplates[J]. Plasmonics, 2020,2061–2069。

  (16) Xu M , Yan L , Zhu Y , et al. Polydopamine-coated gold nanoparticles used as modifier of the electron transport layer for PTB7:PC 71 BM polymer solar cells[J]. Journal of Materials Science: Materials in Electronics, 2020, 31(9):6698-6705.

  (17) Meng Wu, LutingYan, Mingyuan Xu, Yanyun Zhu, Yuting Li, Xiaotong Sun, Runxiang Xu. JingfaYang. Preparation of composite graphene hydrogels adsorbent with special-shaped ZnO and TiO2.2019, 581(20): 123783.

  (18) Yuting Li, Luting Yan, Ji Zhang, Mingyuan Xu, Yanyun Zhu Preparation of graphene/W18O49 nanorod composites and their application in electrochromic performance. Journal of Materials Science: Materials in Electronics, 30(22), 20181-20188

  (19) Xiaotong Sun, Luting Yan, Runxiang Xu, Mingyuan Xu, Yanyun Zhu.Surface modification of TiO2 with polydopamine and its effect on photocatalytic degradation mechanism.Colloids and Surfaces A,2019,570(199-209)

  (20) Xiuyuan Gao,Luting Yan, Runxiang Xu, Xiaotong Sun. Plasmonic Au nanorods and irradiated PDA/Au nanorod composite used as modifier of the electron transport layer for PTB7:PC71BM polymer solar cells. Journal of Materials Science: Materials in Electronics,2018,29(23): 19976-19984.

  (21) Lei Wang, Luting Yan, Xiuyuan Gao,Effect of electron beam irradiation on polydopamine and its application in polymer solar cells. Int J Energy Res,2018, 42(11):3496-3505.

  (22) Li, J & Yan, L. Fabrication of polydopamine coating and its application in glucose sensor. Journal of Nanoscience and Nanotechnology.2018,18(3), 1606-1610.DOI: https://doi.org/10.1166/jnn.2018.14243

  (23) Meng Wu, Luting Yan, Jiali Li, Lei Wang. Synthesis and photocatalytic performance of Ag/AgCl/ZnO tetrapod composites. Research on Chemical Intermediates, 2017,43(11):6407-6419

  (24) Xiao Chen, Luting Yan.Application of Au, SiO2@Au, and Au@SiO2 nanoparticles in PTB7:PC71BM polymer solar cells.Journal of Materials Science: Materials in Electronics,2017,28(18):13698-13704.

  (25) Huili Wang, Luting Yan. Polydopamine/ZnO nanocomposites as a new electron transport layer for PTB7: PC70BM solar cells. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2017, 531:198-202

  (26) Luting Yan, Kah Howe Chan, Ashraf Uddin. Dopamine-Induced Growth of Au and Ag Nanoparticles on ITO Substrate and Their Application in PCPDTBT-Based Polymer Solar Cell. Plasmonics, 2017, 12(2):345-351. DOI 10.1007/s11468-016-0270-x

  (27) Jiali Li, Luting Yan, Huili Wang, Haiwei Wang, Xiao Chen, Lei Wang, Meng Wu. Au NPs/ITO prepared by dopamine reduction and its application in glucose sensing. J Mater Sci: Mater Electron.2017, 28(3): 3067-3074. DOI 10.1007/s10854-016-5894-2

  (28) Haiwei Wang, Luting Yan, Jiaqi Liu, Jiali Li, Huili Wang.Fabrication of well-aligned ZnO nanorod photoanodes for perovskite solar cells.J Mater Sci: Mater Electron (2016) 27:6872–6880.DOI 10.1007/s10854-016-4640-0

  (29) Luting Yan*, Ashraf Uddin, Haiwei Wang. ZnO Tetrapods:Synthesis and Applications in Solar Cells .Nanomater Nanotechnol, 2015, 5:19, 1-14. doi: 10.5772/60939

  (30) S. Y. Dou, L. T. Yan*,H. W. Wang, J. Q. Liu. Nanocrystalline Sb2S3 sensitized TiO2 photoanode preparation and its application in solar cells. J Mater Sci: Mater Electron, 2015, 26(8): 5767-5773. DOI 10.1007/s10854-015-3135-8

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