Fabrication of Low-Threshold Discreet Schottky Barrier Diode Using Natural Pyrite Crystal
Author:
Affiliation:
1. Tokyo University of Technolgy
Publisher
Japan Institute of Electronics Packaging
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jiepeng/16/0/16_E22-004-1/_pdf
Reference10 articles.
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2. [2] Y. H. Liu, L. Meng, and L. Zhang, "Optical and electrical properties of FeS2 thin films with different thickness prepared by sulfurizing evaporated iron," Thin Solid Films, Vol. 479, pp. 83–88, 2005.
3. [3] K. Büker, N. Alonso-Vante, and H. Tributsch, "Photovoltaic output limitation of n-FeS2(pyrite) Schottky barriers: A temperaturedependent Characterization," Journal of Applied Physics Vol. 72, No. 12, pp. 5721–5728, 15 December 1992.
4. [4] K. P. Bhandari, X. Tan, P. Zereshki, F. K. Alfadhili, A. B. Phillips, P. Koirala, M. J. Heben, R. W. Collins, and R. J. Ellingson, "CdTe Solar Cells with Iron Pyrite Thin Film Back Contacts Fabricated by Hybrid Sputtering/Co-evaporation Process," 2016 IEEE 43rd Photovoltaic Specialists Conference (PVSC), pp. 1425–1428, 2016.
5. [5] S. Massidda, A. Continenza, A. J. Freeman, T. M. de Pascale, F. Meloni, and M. Serra, "Structural and electronic properties of narrow-band-gap semiconductors: Inp, InAs, and InSb," PHYSICAL REVIEW B, Vol. 41, No. 17, pp. 12079–12085, 1990.
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