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王孟菊

個人網站
化學工程系(所)
 
學經歷:
  學歷:
UNIVERSITE DU MAINE, Le Mans, FRANCE
Ph.D. in Laboratoire Polymeres, Colloides et Interfaces (LPCI)

UNIVERSITY OF MICHIGAN, Ann Arbor, Michigan, USA
M.S. in Bioengineering Program, School of Engineering

經歷:
2006-2010, Department of Chemical Engineering, NTUST, Assistant Professor
2002-2006, Queen Mary University of London, London, UK, Post-Doctoral Research Assistant in Department of Engineering
 
專業技術
  電漿技術: 材料表面電漿改質,電漿聚合薄膜、
表面改質以及分析:含即時分析及物理化學分析、
研究材料與生物分子間之交互作用
   
專利介紹
  超疏水膜的製造方法  
Demands on superhydrophobic, self-cleaning and pie......
 

  利用無光罩製程形成半導體結構之方法  
一種無光罩製程形成半導體結構之方法,該方法包括以下的步驟: 提供半導體基板,金屬層以濺鍍(或是化學......
 

  擠壓裝置、蠟列印裝置及其蠟列印方法  

This research describes an innovative method ......
 

研究成果與計畫
 

授課內容

Engineering Mathematics
Polymer Chemistry
Programming Language
Interface Chemistry
Chemical Reaction Engineering
Chemical Engineering Mathematics
Physical Chemistry of Surfaces

代表近作

  1. Ho Quoc Phong, Shu-Ling Wang, Meng-Jiy Wang*, “Cell Behaviors on Micro-patterned Porous Thin Films”, Materials Science and Engineering B, in press, available online 14 January 2010.
  2. M. J. Wang, Y. L. Hung, F. H. Lin and S. Y. Lin, “Dynamic Behaviors of Droplet Impact and Spreading: A Universal Relationship Study of Dimensionless Wetting Diameter and Droplet Height”, Experimental Thermal and Fluid Science, 2009, 33, 1112-1118. (NSC 97-2221-E-011-011-MY2)
  3. M. J. Wang, F. H. Lin, Y. L. Hung and S. Y. Lin, “Dynamic Behaviors of Droplet Impact and Spreading: Water on Five Different Substrates”, Langmuir, 2009, 25(12), 6772–6780. (NSC 97-2221-E-011-011-MY2)
  4. M. J. Wang, F. H. Lin, J. Y. Ong, and S. Y. Lin, “Dynamic Behaviors of Droplet Impact and Spreading- Water on Glass and Paraffin”, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2009, 339, 224-231. (NSC: 96-2221-E-011-080)
  5. P. V. Gushchin, M. L. Kuznetsov, M. Haukka, M. J. Wang, A. V. Gribanov and V. Y. Kukushkin, “A Novel Reactivity Mode for Metal-Activated Dialkylcyanamide Species: Addition of N,N′-Diphenylguanidine to a cis-(R2NCN)2PtII Center Giving an Eight-Membered Chelated Platinaguanidine”, Inorganic Chemistry, 2009, 48, 2583-2592, (NSC: 96-2923-M-002-003-MY2);
  6. C. P. Lee, G Chen, Y. L. Kuo, M. J. Wang and K. L. Liu “An electro-enhanced metalorganic chemical vapor deposition technique for producing thin copper films with (hfac)CuI(COD) as a precursor”, Microelectronic Engineering, 2009, 86 (1) 47-54, (NSC:96-2221-E-011-081);
  7. M. R. Tyan, N. A. Bokach, M. J. Wang, M. Haukka, M. L. Kuznetsov and V. Y. Kukushkin “Facile cyanamide–ammonia coupling mediated by cis- and trans-[PtIIL2] centers and giving metal-bound guanidines”, Dalton Transactions, 2008, 5178 – 5188. (NSC: 96-2923-M-002-003-MY2);
  8. P. V. Gushchin, M. R. Tyan, N. A. Bokach, M. D. Revenco, M. Haukka, M. J. Wang, C. H. Lai, P. T. Chou, and V. Y. Kukushkin; “Novel Tailoring Reaction for Two Adjacent Coordinated Nitriles Giving 1,3,5-Triazapentadiene Complexes”, Inorganic Chemistry, 2008, 47, 11487-11500. (NSC: 96-2923-M-002-003-MY2);
  9. M. D. Paine, M. S. Alexander, K. L. Smith, M. J. Wang and J. P. W. Stark, “Controlled electrospray pulsation fordeposition of femtoliter fluid droplets onto surfaces”, Journal of Aerosol Science, 2007, 38(3) 315-324;
  10. J. Wu, M. J. Wang, John P. W. Stark, “Evaluation of band structure and concentration of ionic liquid BMImBF4 in molecular mixtures by using second derivatives of FTIR spectra”, Journal of Quantitative Spectroscopy & Radiative Transfer, 2006, 102 (2), 228-235;
  11. M. J. Wang, M. Tabellout, I. M. Chang, F. Poncin-Epaillard, “A Novel Technique to measure the Surface Electrical Potential of Polymer film by using Dielectric Spectroscopy”, Surface and Interface Analysis, 2005, 37, 737-742;
  12. M. J. Wang, I. M. Chang, F. Poncin-Epaillard, “Acid and basic functionalities of nitrogen and carbon dioxide plasma-treated polystyrene”, Surface and Interface Analysis, 2005, 37, 348-355;
  13. M. J. Wang, I. M. Chang, F. Poncin-Epaillard, “Illustration of the interface between N2/CO2 plasmas and polystyrene surface”, Surface and Interface Analysis, 2005, 37, 325-331;
  14. M. J. Wang, I. M. Chang, F. Poncin-Epaillard, “Effects of the Addition of Hydrogen in the Nitrogen Cold Plasma: The Surface Modification of Polystyrene”, Langmuir, 2003, vol. 19, No. 20, 8325-8330.

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