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光电转换和热光电转换的实现和应用 被引量:5

Photoelectric and thermophotovoltaic conversion:Realization and applications
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摘要 为了降低光电转换产品的成本,提高光电转换的效率和能量的利用率,在介绍了光电转换和热光电转换的基本原理以及发展方向后,从动力学角度推导了热光电转换过程中选择发射器的性能与发射器材料的微观作用参数的依赖关系,为寻找用于有效热光电转换过程的高性能选择发射器材料指明了方向;最后介绍了当前光电转换和热光电转换的应用情况。 The photoelectric effect and especially the thermophotovoltaic effect, their current status and future directions of development are presented. Special attentions are paid to the development of selective emitters, the most important part in the thermophotovoltaic devices, by analyzing the dynamical processes of the electric-phonon interac- tions in the materials. The dependence of the performance of selective emitters on these microscopic interaction parameters is given. Finally, current and potential applications of photoelectric and thermophotovoltaic effects are summarized.
作者 邓泉 段昌奎
出处 《重庆邮电大学学报(自然科学版)》 2007年第2期127-131,共5页 Journal of Chongqing University of Posts and Telecommunications(Natural Science Edition)
基金 国家自然科学基金(10404040) 重庆市自然科学基金(2004-2006)
关键词 光电转换 热光电转换 选择发射器 动力学过程 photoelectric conversion thermophotovoltaic conversion select emitter dynamics process
作者简介 邓泉(1981-),男,湖北潜江人,硕士研究生,研究方向为固体发光及应用。E—mail:modernphysics@cqupt.edu.cn。 段昌奎(1973-),男,博士,教授,博士生导师,现主要从事微电子与固体电子技术。
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  • 1蔡進譯.超高效率太阳电池-从爱因斯坦的光电效应谈起[J].物理双月刊(台湾),2005,27(5):701-719.
  • 2[2]BLAIR J,WHITE D C,WEDLOCK B D.Recent advance in thermal energy conversion[C]//.Proc.15th Power Source Conf.,[s.l.]:[s.n.],1961:125-132.
  • 3[3]YUGAMI H,SASAH H,YAMAGUCHI M.Thermophotovoltaic systems for civilian and industrial applications in Japan[J].Semicond Sci Technol,2003,18:239-246.
  • 4[4]KRUGER J S,GUAZZONI G,NAWROCKI S J.Army thermophotovoltaic efforts[C]//.1999 4th NREL Conf.on Thermophotovoltaic Generation of Electricity.New York:[s.n.],1999:30-35.
  • 5[5]MONDT J F,UNDERWOOD M L,NESMITH B J.Advanced converter technology evaluation and selection for ARPS (Advanced Radiosotope Power Source)[C]//STAIF-98.Albuquerque,United States:[s.n.],1998:1098 -1105.
  • 6[6]DEBELLIS C L,SCOTTO M V,FRASS L,et al.Component development for 500 watt diesel fueled portable thermophotovoltaic (TPV) power supply[C]//.1999 4th NREL Conf.on Thermophotovoltaic Generation of Electricity.New York:[s.n.],1999:362-370.
  • 7[7]BECKER F E,DOYLE E F,SHUKLA K.Operating experience of a portable thermophotovoltaic power supply[C]//.1999 4th NREL Conf.on Thermophotovoltaic Generation of Electricity.New York:[s.n.],1999:394-402.
  • 8[8]FRASS L,BALLANTYNE R,HUI S,et al.Commercial GaSb cell and circuit development for the Midnight Sun TPV stove[C]//.1999 4th NREL Conf.on Thermophotovoltaic Generation of Electricity.New York:[s.n.],1999,460 (1):480-487.
  • 9[9]STNEBLER D L,WRONSKI C R.Reversible conductivity changes in discharge-produced amorphous Si[J].Appl Phys Lett,1977,31 (4):292-294.
  • 10[10]LICCIULLI A,DISO D,TORSELLO G,et al.The challenge of high-performance selective emitters for thermophotovoltaic applications[J].Semicond Sci Technol,2003,18:174-182.

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