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于濂清
2023-05-17 15:32
  • 于濂清
  • 于濂清 - 教授 博导-中国石油大学(华东)-材料科学与工程学院-个人资料

近期热点

资料介绍

个人简历


教育经历 \r
2002年-2007年,浙江大学,材料系,博士 \r
1998年-2002年,浙江大学,材料系,学士 (保送直博)\r
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工作经历 \r
2015年-今, 中国石油大学(华东),教授\r
2009年-2015年,中国石油大学(华东),副教授 \r
2007年-2009年,中国石油大学(华东),讲师 \r
2013年-2014年,耶鲁大学,化工系,访问学者 \r
2010年-2011年,北京大学,材料系,访问学者

研究领域


""1、纳米磁性材料&光催化材料(本方向针对最前沿的科学问题设置) \r
a)光化学能转化,制备单分散纳米氧化铁及表面改性,研究光电催化、光降解;二氧化钛石墨烯复合光催化提高对可见光的利用效率、高效太阳能电池等。使用一锅法制备出硫/RGO复合物,发现了纳米硫的量子尺寸效应,纳米硫与RGO之间的C-S/C=S化学键合,复合物具有优异的光电化学和降解染料性能。 \r
b) 稀土永磁纳米双相交换耦合作用对减少稀土用量、提高稀土永磁磁性材料性能有重要意义。研究人员通过化学热分解法将纳米材料分别组装、控制纳米尺度、分散、比例等方案,将软、硬磁性相精密控制,实现可控纳米级交换耦合。该研究方案与传统粉末冶金工艺(快淬法、HDDR法)相比具有明显优势。该研究结果对深入研究强磁性起源、纳米交换耦合作用有重要意义。 \r
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2、高性能稀土永磁材料制备研究 主要研究合金成分对烧结NdFeB永磁材料微结构、磁性能的影响,解决国内不能生产高磁能积磁体N52(最大磁能积(BH)m达到52MGOe)的重大问题,揭示了该磁体的成分特点和制备工艺参数。同时研究了速凝及脱氢制备工艺对材料显微组织、磁性能、力学性能的影响。 \r
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3、高工作温度磁性催化剂研究 苯选择加氢法制环己烯原料充足、经济效益高、无废弃物污染。但是,由于环己烯是苯加氢的中间产物,很容易继续加氢生成环己烷。因此,为提高环己烯的选择性,开发适合的催化剂和催化手段是苯选择加氢的关键。""""

近期论文


LianqingYu*, Yaping Zhang**, Jiandong He, Haifeng Zhu, Xiaoyan Zhou, MingLi, Qianlong Yang, Fei Xu, Enhanced photoelectrochemicalproperties of α- Fe2O3 nanoarrays for water splitting. Journalof Alloys and Compounds. 2018, 753(15): 601-606 一区3.6 \r
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YapingZhang, Haifeng Zhu, Lianqing Yu*, JiandongHe and Chengxing Huang, MoSe2 modifiedTiO2 nanotube arrays with superior photoelectrochemicalperformance, Mater.Res.Express, 2018, 5: 045014 \r
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LianqingYu*, MingLi, ChengxingHuang, YapingZhang*, JiandongHe, XiaoyanZhou, HaifengZhu, Photoelectrochemical properties of N doped blackTiO2nanotube arrays, MaterialsLetters, 2018, 216: 239-242 \r
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LianqingYu, * Jiandong He, Chengxing Huang, Ming Li, Yaping Zhang,Xiaoyan Zhou and Haifeng Zhu, Electron transportation path buildfor superior photoelectrochemical performance of Ag3PO4/TiO2,RSCAdvances, 2017, 7, 54485-54490 \r
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KaituoDong*, Jiandong He, Junxue Liu, Fengting Li,Lianqing Yu*,Yaping Zhang, Xiaoyan Zhou,Hongzhang Ma,Photocatalytic performance of Cu2O loaded TiO2/rGOnano-heterojunctions obtained by UV-reduction, Journal ofMaterials Science, 2017, 52(11): 6754-6766 二区 \r
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L.Q. Yu,Y. P. Zhang, Z. Yang, J. D. He, K. T. Dong and Y. Hou, ChemicalSynthesis of Nd2Fe14B/Fe3B Nanocomposites, Nanoscale, 2016, 8,12879-12882 一区6.74 \r
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LianqingYu, CeYang, YanglongHou, Controllable Nd2Fe14B/α-Fe nanocomposites: chemicalsynthesis and magnetic properties, Nanoscale, 2014, 6 (18): 10638– 10642一区6.74 \r
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XiaokaiLi,LouiseM. Guard, JieJiang, KelseySakimoto, Jing-ShunHuang, JianguoWu, JinyangLi, LianqingYu,RaviPokhrel, GaryW. Brudvig, SohrabIsmail-Beigi, NilayHazari, AndréD. Taylor, Controlled Doping of Carbon Nanotubes withMetallocenes for Application in Hybrid Carbon Nanotube/Si SolarCells, Nano Lett., 2014, 14:3388-3394 一区,12.3 \r
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Yuan,Y.F.,Yu, L. Q.Wu, H. M. Yang, J. L. Chen, Y. B. Guo, S. Y. Tu, J. P..,Electrochemical performances of Bi based compound film-coated ZnOas anodic materials of Ni-Zn secondary batteries. ElectrochimicaActa, 2011. 56(11): p. 4378-4383. 一区3.9 \r
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Lianqing Yu*,Yaping Zhang,Qianqian Zhi, Qingqing Wang, Forrest S. Gittleson,Jinyang Li, André D. Taylor, EnhancedPhotoelectrochemicaland Sensing Performance of Novel TiO2 Arrays to H2O2,Sensors andActuator B: Chemical, 2015. 211, pp 111-115, 二区.3.37 \r
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Kaituo Dong,LianqingYu*,Yaping Zhang, Qingqing Wang, B. Neppolian, Green synthesis ofsulfur/graphene nanocomposite and photocatalytic performance,Science of Advanced Materials, 二区,2014, 6(8): 1828-1835 \r
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YunjieLiu; Lanzhong Hao; Wei Gao; Zhipeng Wu; Yali Lin; Guixia Li;Wenyue Guo; LianqingYu;Huizhong Zeng; Jun Zhu; Wanli Zhang, Hydrogen gas sensingproperties of MoS2/Si heterojunction, Sensors and ActuatorsB: Chemical, 2015, 211: 537-543, 二区.3.37 \r
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LianqingYu,Kaituo Dong, Ce Yang, Qingqing Wang, Yanglong Hou, FacileSynthesis and Dehydrogenation Properties of Fe3B Nanoalloys,Materials Letters, 2014, 132(1): 4-7 二区 \r
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LianqingYu*,Kaituo Dong, Yaping Zhang, Qingqing Wang, Qianqian Zhi, Tuned n/nor n/p heterojunctions for reduced graphene oxide and titaniananosheets and their electrochemical properties, MaterialsChemistry and Physics, 2014,148(15):803-809二区 \r
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Lianqing Yu*,Qianqian Zhi, Yaping Zhang, Qingqing Wang, Kaituo Dong, B.Neppolian, Photocatalytic Properties of TiO2 Porous Network Film,Journal of Nanoscience and Nanotechnology 三区 \r
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LianqingYu*, Liu Rishan, Yaping Zhang, Qingqing Wang, Qianqian Zhi,Kaituo Dong, Photoelectrochemical property of Fe-N modifiedtitania nanotube array films, Journal of optoelectronics andadvanced materials,2014,16(5-6): 519 – 523 \r
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LianqingYu*, Qingqing Wang, Chenguang Liu, Yaping Zhang, Lanzhong Hao,Magnetically Stabilized Bed for Benzene Selective Hydrogenation,Chemical Engineering & Technology, 2014, 37(3):1-7 \r
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L.Q.Yu, X. L. Zhong, Y.P. Zhang, Y.G. Yan, Production and CorrosionResistance of NdFeBZr Magnets with an Improved Response toThermal Variations during Sintering, Journal of Magnetism andMagnetic Materials, 323 (2011) 1152–1155 \r
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LianqingYu, Xiaoliang Zhong, Yaping Zhang, Jing Zhang, Chenguang Liu,Preparation and characterization of core-shell γ-Fe2O3@SiO2@Al2O3 magnetic catalyst,MaterialsScience Forum,688(2011) 223-227

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