鄭文桐(Wen-Tung Cheng)
職稱   教授兼系主任
電話 (04) 22857325 
E-mail   wtcheng@dragon.nchu.edu.tw
辦公室  709 
個人網址   http://web.nchu.edu.tw/pweb/users/12wtcheng/
最高學歷  國立中央大學 化學工程博士
研究領域 節能與綠色製程、感光性高分子應用、奈米流體操控技術、資訊光電材料暨製程整合
簡要經歷
國立台灣科技大學 化學工程學士 (1985) 
國立中央大學 化學工程博士 (1995) 
Process Engineer & Supervisor, Chant World International Co, Ltd. (1985-1990). 
Research Scientist & Project Manager, ITRI/ MRL (1995 -1997). 
Assistant Professor, National Chung Hsing University (1997-2003) 
Associate Professor, National Chung Hsing University (2003-2007) 
Professor, National Chung Hsing University (2007-) 
Teaching subject
Publications
A.期刊論文
  1. T.H. Liu a, W.T. Cheng, and K.T. Huang, “Crystallization and morphology of indanthrone converted from latent pigment in the solution with photo acid generator,” Dyes and Pigments, vol.105, pp.137-144, 2014. (SCI)
  2. W.T. Cheng , E.N.Huang, and S.W. Du, “Numerical analysis on transient thermal flow of the blast furnace hearth in tapping process through CFD,” International Communications in Heat and Mass Transfer, vol.57, pp. 13–21, 2014. (SCI)
  3. W.T. Cheng and J.C. Wu, “Organic nano-particle capping with polymeric surfactant dispersed by supercritical carbon dioxide in the binary solvent,” Chemical Engineering and Processing: Process Intensification, vol.66, pp.44– 50, 2013. (SCI)
  4. T.H. Liu, W.T. Cheng, and J.J. Lin, “Effect of Photo-initiator on Photosensitive Emission Polymer,” Journal of Photopolymer Science and Technology, vol.26, pp.757 –764, 2013. (SCI)
  5. C.H. Chen, W.T. Cheng, M.L. Tsai, and K.T. Huang, “Fabrication and performance of copper phthalocyanine/squaraine dye/perylene composite with bulk heterojunctions by the solution blending process,” Ind. Eng. Chem. Res., vol.51, pp.3630−3638, 2012. (SCI)
  6. W.T. Cheng and C. H. Lin , “Numerical analysis of mass transfer on the melting phenomenon from a vertical plate in a liquid-saturated porous medium,” Journal of Porous Media, vol.15(5), pp.485-493 , 2012. (SCI)
  7. C.H. Chen and W.T. Cheng, “Fabrication and characterization of color photosensitive organic compounds based on copper phthalocyanine having acryloyl group,” Journal of Photopolymer Science and Technology, vol.25 , pp.409-413, 2012. (SCI)
  8. W.T. Cheng , E.N. Huang, M.H. Chuo, and S.W. Du, “Transient Natural Convective Heat Transfer in Porous Medium with Solidification of Binary mixture,” International Communications in Heat and Mass Transfer, vol.39, pp.1132–1137, 2012. (SCI)
  9. R.J. Lee, W.C. Tsai, W.T. Cheng, B.C. Shiue, and J.J. Lin, “Self-assembled and crystallized composites from polyether-amine and montmorillonite in the presence of copper (II) ions,” Journal of Applied Polymer Science, vol.119, pp.3437–3445, 2011. (SCI)
  10. C.H. Lin, W.T. Cheng, and S.W. Du, “The numerical prediction of the titanium carbide distribution in the blast furnace during tapping process: a preliminary study,” steel research international, vol.82, pp.287–293, 2011. (SCI)
  11. T.Y. Huang and W.T. Cheng, “The effect of photo-initiator on the contrast curve of negative-work photo-resist,” Journal of Photopolymer Science and Technology , vol.24, pp.643-646 , 2011. (SCI)
  12. T.H. Liu, W.T. Cheng, and K.T. Huang , “Pigmentation of boc-indanthrone in organic solvent/photopolymer through a thermal process,” Ind. Eng. Chem. Res. , vol.49 , pp.541–547, 2010. (SCI)
  13. R.H. Liu, S. A. Dai , F.J. Chang, W.T. Cheng, and Y.F. Shih, “Highly efficient PET film-assisted adsorption process for the de-inking of xerographic wastepaper,” JTICE, vol.41 , pp.344–351, 2010. (SCI)
  14. W.T. Cheng and Y.W. Chih, “Manipulation of silver nanostructures using supercritical fluids in the presence of polyvinylpyrrolidone and ethylene glycol,” The Journal of Supercritical Fluids, vol.54, pp.272–280, 2010. (SCI)
  15. T.H. Liu, W.T. Cheng, and K.T. Huang, “Pigmentation of BOC-indanthrone through photoacid-catalysis in the photo-polymeric film,” Journal of Photopolymer Science and Technology, vol.23, pp.529-533, 2010. (SCI)
  16. C.M. Chang, W.T. Cheng, W.J. Liu, H.W. Cheng, C.E. Huang, and S.W. Du, “Thermal flow of fluid with magnetic particles in the presence of magnetic field,” International Communications in Heat and Mass Transfer, vol.37, pp.801–808, 2010. (SCI)