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    陳廬陽
    發布人: 網站管理員 發布時間: 2016-03-28 作者: 訪問次數: 14072

     



                                                              陳廬陽

                                                          教授、博導

                                            Emailchenly@ecust.edu.cn

                                         辦公室地址:實驗十五樓111

                                                    電話:021-64252687

     


    個人簡介:

    2001年本科畢業于南京理工大學bob电竞竞猜,2006年在中國科學技術大學獲理學博士學位。之后前往韓國高麗大學擔任研究講師,2007年至2015年在日本東北大學先后擔任研究員、助理教授。2016年被聘為華東理工大學特聘教授,2017年入選國家級青年高端人才計劃。目前在材料科學與工程學院和超細材料制備與應用教育部重點實驗室開展科研教學工作。

     

    長期從事無機納米功能材料的設計、結構及其性能的研究,迄今已在Adv. Mater.、Adv. Energy Mater.、Adv. Fucnt. Mater.、Angew. Chem. Int. Ed.等國際學術期刊上發表SCI論文80余篇bob电竞竞猜,引用超過2300次。受邀為英文學術專著《Nanoporous Materials: Synthesis and Application》撰寫第五章節。獲得中國、日本授權專利4項。主持和參加國家自然科學基金、日本東北大學科研基金多項bob电竞竞猜。

     

    研究方向:

    1.     三維納米多孔材料及其復合材料的設計與制備

    2.     納米多孔金屬與復合材料在燃料電池、水分解制氫等電催化上的研究

    3.     納米多孔復合材料在超級電容器、鋰空電池等能量存儲轉化方面的研究

     

    招生情況:

    招生專業為材料科學與工程和高分子化學與物理。熱忱歡迎有志于納米材料儲能研究的博士后、博士生和碩士生加入本課題組。

     
    代表性論文:
    1.     L. Y. Chen, X. W. Guo, J. H. Han, P. Liu, X. D. Xu, A. Hirata, M. W. Chen. Nanoporous metal/oxide hybrid materials for rechargeable lithium-oxygen batteries. Journal of Materials Chemistry A 2015, 3, 3620-3626.
    2.    X. B. Ge#, L.Y. Chen#, L. Zhang, Y.R. Wen, A. Hirata, M.W. Chen. Nanoporous metal enhanced catalytic activities of amorphous molybdenum sulfide for high efficiency hydrogen production. Advanced Materials 2014, 26, 3100-3104. (#Co-first author)
    3.     L. Y. Chen, Y. Hou, J. L. Kang, A. Hirata, M. W. Chen. Asymmetric metal oxide pseudocapacitors advanced by three-dimensional nanoporous metal electrodes. Journal of Materials Chemistry A 2014, 2, 8448-8455.
    4.     Y. Hou#, L. Y. Chen#, P. Liu, J. L. Kang, T. Fujita, M. W. Chen. Nanoporous metal based flexible asymmetric pseudocapacitors. Journal of Materials Chemistry A 2014, 2, 10910-10916.
    5.     L. Y. Chen, Y. Hou, J. L. Kang, A. Hirata, T. Fujita, M. W. Chen. Toward the theoretical capacitance of RuO2 reinforced by highly conductive nanoporous gold. Advanced Energy Materials 2013, 3, 851-856.
    6.     L. Y. Chen, N. Chen, Y. Hou, Z. C. Wang, S. H. Lv, T. Fujita, J. H. Jiang, A. Hirata, M. W. Chen. Geometrically controlled nanoporous PdAu bimetallic catalysts with tunable Pd/Au ratio for direct ethanol fuel cells. ACS Catalysis 2013, 3, 1220-1230.
    7.     L. Y. Chen, J. L. Kang, Y. Hou, P. Liu, T. Fujita, A. Hirata, M. W. Chen. High-energy-density nonaqueous MnO2@nanoporous gold based supercapacitors. Journal of Materials Chemistry A 2013, 1, 9202-9207.
    8.    L. Y. Chen, T. Fujita, M. W. Chen. Biofunctionalized nanoporous gold for electrochemical biosensors. Electrochimica Acta 2012, 67, 1-5.
    9.     L. Y. Chen, H. Guo, T. Fujita, A. Hirata, W. Zhang, A. Inoue, M. W. Chen. Nanoporous PdNi bimetallic catalyst with enhanced electrocatalytic performances for electro-oxidation and oxygen reduction reactions. Advanced Functional Materials 2011, 21, 4364-4370.
    10.   L. Y. Chen, X. Y. Lang, T. Fujita, M. W. Chen. Nanoporous gold for enzyme-free electrochemical glucose sensors. Scripta Materialia 2011, 65, 17-20.
    11.   L. Y. Chen, T. Fujita, Y. Ding, M. W. Chen. A three-dimensional gold-decorated nanoporous copper core-shell composite for electrocatalysis and nonenzymatic biosensing. Advanced Functional Materials 2010, 20, 2279-2285.
    13.   L. Y. Chen, L. Zhang, T. Fujita, M. W. Chen. Surface-enhanced Raman scattering of silver@nanoporous copper core-shell composites synthesized by an in situ sacrificial template approach. Journal of Physical Chemistry C 2009, 113, 14195-14199.
    14.   J. L. Kang, L. Y. Chen, A. Hirata, S. L. Zhu, T. Fujita, M. W. Chen. Extraordinary supercapacitor performance of a multicomponent and mixed-valence oxyhydroxide. Angewandte Chemie International Edition. 2015, 54, 8100-8104.
    15.   H. Kashani, L. Y. Chen, Y. Ito, J. H. Han, A. Hirata, M. W. Chen. Bicontinuous nanotubular graphene-polypyrrole hybrid for high performance flexible supercapacitors. Nano Energy 2016, 19, 391-400.
    16.   Y. W. Tan, P. Liu, L. Y. Chen, W. T. Cong, Y. Ito, J. H. Han, X. W. Guo, Z. Tang, T. Fujita, A. Hirata, M. W. Chen. Monolayer MoS2 films supported by 3D nanoporous metals for high-efficiency electrocatalytic hydrogen production. Advanced Materials 2014, 26, 8023-8028.
    17.   J. L. Kang, A. Hirata, H. J. Qiu, L. Y. Chen, X. B. Ge, T. Fujita, M. W. Chen. Self-grown oxy-hydroxide@nanoporous metal electrode for high-performance supercapacitors. Advanced Materials 2014, 26, 269-272.
    18.   T. Fujita, T. Tokunaga, L. Zhang, D. Li, L. Y. Chen, S. Arai, Y. Yamamoto, A. Hirata, N. Tanaka, Y. Ding, M. W. Chen. Atomic observation of catalysis-induced nanopore coarsening of nanoporous gold. Nano Letters 2014, 14, 1172-1177.
    19.   Q. Chen, S. Tanaka, T. Fujita, L. Y. Chen, T. Minato, Y. Ishikawa, M. W. Chen, N. Asao, Y. Yamamoto, T. N. Jin. Synergistic effect of nanoporous AuPd alloy catalysts on highly chemoselective 1, 4-hydrosilylation of conjugated cyclic enones. Chemical Communications 2014, 50, 3344-3346.
    20.   J. L. Kang, L. Y. Chen, Y. Hou, C. Li, T. Fujita, X. Y. Lang, A. Hirata, M. W. Chen. Electroplated thick manganese oxide films with ultrahigh capacitance. Advanced Energy Materials 2013, 3, 857-863.
    21.   X. B. Ge, L. Y. Chen, J. L. Kang, T. Fujita, A. Hirata, W. Zhang, J. Jiang, M. W. Chen. A core-shell nanoporous Pt-Cu catalyst with tunable composition and high catalytic activity. Advanced Functional Materials 2013, 23, 4156-4162.
    22.   Y. Hou, L. Y. Chen, L. Zhang, J. L. Kang, T. Fujita, J. Jiang, M. W. Chen. Ultrahigh capacitance of nanoporous metal enhanced conductive polymer pseudocapacitors. Journal of Power Sources 2013, 225, 304-310.
    23.  M. Yan, T. N. Jin, Y. Ishikawa, T. Minato, T. Fujita, L. Y. Chen, M. Bao, N. Asao, M. W. Chen, Y. Yamamoto. Nanoporous gold catalyst for highly selective semihydrogenation of alkynes: remarkable effect of amine additives. Journal of the American Chemical Society 2012, 134, 17536-17542.






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