浙江理工大學材料與紡織學院導師:陳光良

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浙江理工大學材料與紡織學院導師:陳光良

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浙江理工大學材料與紡織學院導師:陳光良 正文


  陳光良,男,副教授,碩士生導師。2007年6月畢業(yè)于中國科學院物理研究所, 獲得理學博士。2007年7月到浙江理工大學材料與紡織學院工作。2010年11月-2011.12月獲得巴黎研究基金資助在法國皮兒居里大學(巴黎六大)從事博士后工作。在學習和工作期間,主要從事的研究方向有:利用射頻等離子體法在薄膜基體上制備類金剛石;研究液體電極大氣壓DBD等離子體炬的放電特性和生物探針制備;研制等離子體流化床并在該裝置上對微納米材料進行改性和廢氣廢水處理研究;等離子體法制備高性能功能纖維;微通道納米粒子對廢水降解機理研究。此外,2006年工作期間得中科院優(yōu)秀博士生獎學金,2008獲得浙江理工大學優(yōu)秀青年教師稱號。

  當前,本人主持浙江省自然基金二項和日本東麗基金一項,參加國家自然科學基金重點一項和面上基金三項;發(fā)表SCI科技論近30篇,授權發(fā)明專利三項。

  一、發(fā)表的主要論文
  1.G. L. Chen, M. Y. Zhou, S. H. Chen, G. H. Lv and J. M. Yao. Nano-layer biofilm coated on the magnetic nanoparticles by DBD glow- plasma fluidized bed for immobilizing antimicrobial peptide, Nanotechnology, 20, p465706, 2009.
  2.G. L. Chen, M. Y. Zhou, S. H. Chen and W. X. Chen. The different effects of oxygen and air DBD plasma byproducts on the degradation of methyl violet 5BN, Journal of Hazardous Materials, 172, p786–791, 2009.
  3.G. L. Chen, M. Y. Zhou, S. H. Chen, W. X. Chen and S. Z. Yang. Organic nanocones fabricated by the atmospheric plasma polymerization for immobilizing bioprobes, Nanotechnology, 19, p075504, 2008.
  4.G. L. Chen, M. Y. Zhou, S. H. Chen, W. X. Chen and S. Z. Yang. Biofilm deposited by the atmospheric plasma liquid sputtering, Surface & Coatings Technology, 202, p4741-4745, 2008.
  5.G. L. Chen, S. H. Chen, W. R. Feng, W. X. Chen and S. Z. Yang. Surface modification of the nanoparticles by an atmospheric room-temperature plasma fluidized bed, Applied Surface Science, 254, p3915-3920, 2008
  6.G. L. Chen, S. H. Chen, W. X. Chen and S. Z. Yang. A cold plasma plume with a highly conductive liquid electrode, Chinese Physics B, 17, p4568-4573, 2008.
  7.G. L. Chen, W. J. Zhao, S. H. Chen, M. Y. Zhou, W. R. Feng, W. C. Gu and S. Z. Yang. Preparation of nanocones for immobilizing DNA probe by a low-temperature plasma plume, Applied Physics Letters, 89, p121501, 2006.
  8.G. L. Chen, S. H. Chen, M. Y. Zhou, W. R. Feng, W. C. Gu and S. Z. Yang. The preliminary discharging characterization of a novel APGD plume and its application in the organic contaminant degradation, Plasma Sources Science and Technology, 15, p603-608, 2006.
  9.G. L. Chen, S. H. Chen, M. Y. Zhou, W. R. Feng, W. C. Gu and S. Z. Yang. Application of a novel atmospheric pressure plasma fluidized bed in the powder surface modification, Journal of Physics D: Applied Physics, 39, p5211-5215, 2006.
  10.G. L. Chen, S. H. Fan, C. L. Li, W. C. Gu, W. R. Feng, S. Z.Yang et al. A novel atmospheric pressure plasma fluidized bed and its application in mutation of plant seeds, Chinese Physics Letters, 22, p1980-1983, 2005.
  11.G. L. Chen, Y. J. Ge, Y. F. Zhang, G. Q. Zhang, G. L. Zhang, J. L. Wang, Y. F. Liu, W. C. Gu, W. R. Feng, C. Z. Liu and S. Z. Yang. Study on the preparation of high barrier hydrogenated carbon film and its properties, Acta Physica Sinica, 54, p818-823, 2005.
  12.G. L. Chen, Y. F. Zhang, G. Q. Zhang and Y. J. Ge. Study on application of fiber cloth treated by plasma in cement mortar, Concrete, 11, p45-48, 2003.
  13.X. J. Liu, G. L. Chen, S. H. Chen, F. Qian, K. C. Feng and S. Z. Yang. Removal of NO molecules by a novel atmospheric plasma apparatus, Chinese Physics Letters, 23, P2827-2829, 2006.
  14.W. R. Feng, G. L. Chen, Y. Zhang, W. C. Gu, G. L. Zhang, E. W. Niu, C. Z. Liu, S. Z. Yang. Preparation of Ta(C)N films by pulsed high energy density plasma, Journal of Physics D: Applied Physics, 40, P2132-2137, 2007.
  15.W. R. Feng, G. L. Chen, L. Li, Guohua Lv, X. H. Zhang, C. Z. Liu and S. Z. Yang. Phase transformation and microstructure of Ni–Mn–Ga ferromagnetic shape memory alloy particles, Journal of Physics D: Applied Physics, 40, P 4238-42, 2007.
  16.W. R. Feng, G. L. Chen, W. C. Gu, G. L. Zhang, S. H. Fan, C. Z. Liu and S. Z. Yang. Surface modification of materials by pulsed high energy density plasma and its applications, Physics, 34, P 915-919, 2005
  17.W. R. Feng, C. Z. Liu, G. L. Chen, G. L. Zhang, W.C. Gu, E. L. Niu, S. Z.Yang. Titanium carbonitride films on cemented carbide cutting tool prepared by pulsed high energy density plasma, Applied Surface Science, , 253, P4923-4927, 2007.
  18.G. L. Zhang, J. L. Wang, G. L. Chen, et al. Axial property of the inner surface of a metal tube processed by GEPSII, Acta Physica Sinica, 56, P1461-1466, 2007.
  19.W. C. Gu, G. H. Lv, H. Chen, G. L. Chen, Wenran Feng, Size Yang. PEO protective coatings on inner surface of tubes, Surface and Coatings Technology, 201, P6619-6622, 2007.
  20.W. C. Gu, D. J. Shen, Y.L. Wang, G. L. Chen, et al. Deposition of duplex Al2O3/aluminum coatings on steel using a combined technique of arc spraying and plasma electrolytic oxidation, Applied Surface Science, 252, P2927-2932, 2006.
  21.W. C. Gu, G. H. Lv, H. Chen, G. L. Chen, W. R Feng, S. Z. Yang. Characterisation of ceramic coatings produced by plasma electrolytic oxidation of aluminum alloy, Materials Science and Engineering: A, 447, P158-162, 2007.
  22.W. C. Gu, G. H. Lv, H. Chen, G. L. Chen, et al. P Preparation of ceramic coatings on inner surface of steel tubes using a combined technique of hot-dipping and plasma electrolytic oxidation, Journal of Alloys and Compounds, 430, P308-312, 2007.
  23.W. C. Gu, G. H. Lv, H. Chen, G. L. Chen W. R. Feng, G. L. Zhang, S. z. Yang. Investigation of morphology and composition of plasma electrolytic oxidation coatings in systems of Na2SiO3–NaOH and (NaPO3)6–NaOH, Journal of Materials Processing Technology, 182, P28-33, 2007.
  24.W. R. Feng, D. R. Yan, J. N. He, G. L. Chen, W. C. Gu, G. L. Zhang, C. Z. Liu and S. Z.Yang. Microhardness and microstructure of nanocrystalline TiN coating by reactive plasma spraying, Acta Physica Sinica, 54, P2399-2402, 2005.

  二、專利
  1)陳光良,楊思澤,張谷令,王久麗,劉元富,馮文然,劉赤子,一種等離子體材料處 理設備;實用新型,專利號:ZL200420066560.9;
  2)陳光良,楊思澤,張谷令,王久麗,劉元富,馮文然,劉赤子,在常溫大氣壓下對材料進行處理的等離子體流化床及方法;實用新型,專利號:ZL200410048304.1;
  3)陳光良,楊思澤,張谷令,一種大氣壓介質阻擋輝光放電等離子體發(fā)生方法及裝置;發(fā)明專利,專利號:ZL200610065769.7。

  聯(lián)系方式:glchen@zstu.edu.cn,glchen1975@gmail.com;
  電話:15958174737

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