國立台灣大學光電工程學研究所
 
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2019/04/01
Spotlight-One-lens camera using a biologically based artificial compound eye with multiple focal lengths
2019/03/09
Spotlight-Powerful LED-Based Train Headlight Optimized for Energy Savings
2018/03/01
Spotlight-SolarDrone (NTU), Allowing Drones to Explore Unexplored Frontiers Launches at CES 2018
2017/02/22
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2015/11/13
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本所成員-教師
 
Professor Name Education Link
  I-Chun Cheng Ph.D., Princeton Univ., U.S.A. Profile | Publication | Laboratory
E-mail iccheng@ntu.edu.tw
Office Ming-Da Hall, R621
Office hour Tue. 14:00PM~16:00PM
Tel +886-2-33669648
Website
Research Topics

1.      Nanocrystalline silicon thin film technology

2.      Flexible electronics

3.

Biography
Representative Publications

 

 

  1. S.-M. Hsu, J.-C. He, Y.-S. Li, D.-Y. Su, F.-Y. Tsai, and I-C. Cheng, “Effect of mechanical strain on electrical performance of flexible p-type SnO thin-film transistors,” IEEE Transactions on Electron Devices, vol. 66, No. 12, pp. 5183-5186, Dec. 2019
  2. Z.-C. Chen, Y. Cheng, C.-C. Lin, C.-S. Li, C.-C. Hsu, J.-Z. Chen, C.-I. Wu, I-C. Cheng, “In-situ atmospheric-pressure dielectric barrier discharge plasma treated CH3NH3PbI3 for perovskite solar cells in regular architecture,” Applied Surface Science, vol. 473, pp. 468-475, Apr. 2019
  3. J.-H. Tsai, I-C. Cheng, C.-C. Hsu, C.-C. Cheuh, J.-Z. Chen, “Feasibility study of atmospheric‐pressure dielectric barrier discharge treatment on CH3NH3PbI3 films for inverted planar perovskite solar cells,” Electrochimica Acta, vol. 239, pp. 1-7, Jan. 2019
  4. A.-C. Yang, Y.-S. Li, I-C. Cheng, D.-Y. Kang, “Solution-processed ultra-low-k thin films comprising single-walled aluminosilicate nanotubes,” Nanoscale, vol. 8, No. 40, pp. 17427-17432, Oct. 2016
  5. B.-S. Wang, Y.-S. Li, and I-C. Cheng, “Mobility enhancement in rf-sputtered MgZnO/ZnO heterostructure thin-film transistors,” IEEE Transactions on Electron Devices, vol. 63, No. 4, pp. 1545-1549, Apr. 2016
  6. Y.-S. Li, J.-C. He, S.-M. Hsu, C.-C. Lee, D.-Y. Su, F.-Y. Tsai, I-C. Cheng, “Flexible complementary oxide-semiconductor-based circuits employing n-channel ZnO and p-channel SnO thin-film transistors,” IEEE Electron Device Letters, vol. 37, No. 1, pp. 46-49, Jan. 2016
  7. T.-J. Wu, C.-Y. Chou, C.-M. Hsu, C.-C. Hsu, J.-Z. Chen, I-C. Cheng, “Ultrafast synthesis of continuous Au thin films from chloroauric acid solution using an atmospheric pressure plasma jet,” RSC Advances, vol. 5, pp.99654-99657, Nov. 2015
  8. I-C. Chiu, Y.-S. Li, M.-S. Tu, and I-C. Cheng, “Complementary oxide-semiconductor-based circuits with n-channel ZnO and p-channel SnO thin-film transistors,” IEEE Electron Device Letters, vol. 35, No. 12, pp. 1263-1265, Dec. 2014 
  9. H.-W. Liu, S.-P. Liang, T.-J. Wu, H. Chang, P.-K. Kao, C.-C. Hsu, J.-Z. Chen, P.-T. Chou, and I-C. Cheng, “Rapid atmospheric pressure plasma jet processed reduced graphene oxide counter electrodes for dye-sensitized solar cells,” ACS Applied Materials & Interfaces, vol. 6, pp. 15105-15112, Sep. 2014
  10. P.-Y. Chen, H.-H. Hsiao, C.-I Ho, C.-C. Ho, W.-L. Lee, H.-C. Chang, S.-C. Lee, J.-Z. Chen, and I-C. Cheng, Periodic anti-ring back reflectors for hydrogenated amorphous silicon thin-film solar cells,” Optics Express, vol. 22, No. S4, pp. A1128-1136, Jun 2014
  11. H. Chang, C.-M. Hsu, P.-K. Kao, Y.-J. Yang, C.-C. Hsu, I-C. Cheng, and J.-Z. Chen, “Dye-sensitized solar cells with nanoporous TiO2 photoanodes sintered by N2 and air atmospheric pressure plasma jets with/without air-quenching,” Journal of Power Sources, vol. 251, pp.215-221, Apr. 2014
  12. I-C. Chiu and I-C. Cheng, Gate-bias stress stability of p-type SnO thin-film transistors fabricated by rf-sputtering,“ IEEE Electron Device Letters, vol. 35, No. 1, pp. 90-92, Jan. 2014
  13. I-C. Cheng, A. Kattamis, K. Long, J. C. Sturm, and S. Wagner, “Self-aligned amorphous-silicon thin-film transistors on clear plastic substrates,” Electron Device Lett., 27, pp. 166-168, 2006.
  14. I-C. Cheng, A. Kattamis, K. Long, J. C. Sturm, and S. Wagner, “Stress control for overlay registration in a-Si:H TFTs on flexible organic-polymer-foil substrates,” Journal of Soc. Inf. Display, 13/7, pp. 563-568, 2005.
  15. I-C. Cheng and S. Wagner, “Hole and electron field-effect mobilities in nanocrystalline silicon deposited at 150°C,” Appl. Phys. Lett., 80, pp. 440-442, 2002.

 

 

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