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Nanostructures for High Efficiency Photovoltaics

机译:高效光伏的纳米结构

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Photovoltaics (PV) technology is currently enjoying substantial growth and investment, owing to worldwide sensitivity to energy security and the importance of renewable energy as a means to mitigate carbon emissions. There are many options in photovoltaic cell design and fabrication, but the key performance metric is the cost per Watt of PVgenerated electricity. While solar cells are semiconductor devices like integrated circuits, the processing cost/area must be several orders of magnitude less expensive than for microelectronic integrated circuit chip processing. Thus while most current solar cell manufacturing is done with crystalline silicon wafers, the future of photovoltaics could see the large-scale development of inexpensive thin film and nano-structured devices and processes. To achieve substantial market growth to the point where photovoltaics is able to seriously contribute to the overall energy supply, high solar conversion efficiency will be critical, as will be the use of earth-abundant materials in thin film cells. This paper surveys several promising new approaches to ultrahigh efficiency thin film multi junction solar cells, options for earthabundant materials, semiconductor nanowire-based solar cells and plasmonic structures for enhanced light absorption that open up new design approaches to very thin photovoltaic devices
机译:光伏(PV)技术目前正在享受大量的增长和投资,由于全球对能源安全的敏感性以及可再生能源作为减轻碳排放的手段的重要性。光伏电池设计和制造中有许多选择,但关键的性能度量是PVGenerated电力的每瓦的成本。虽然太阳能电池是集成电路的半导体器件,但处理成本/区域必须比微电子集成电路芯片处理昂贵的数量级,但是较低的数量级。因此,虽然大多数电流太阳能电池制造用晶体硅晶片完成,但光伏的未来可以看到廉价薄膜和纳米结构装置和工艺的大规模发展。为了实现实质性的市场增长,光伏能源能够认真对整体能源供应,高的太阳能转换效率将是至关重要的,这将是在薄膜细胞中使用土坯物质。本文调查了几种对超高效薄膜多结太阳能电池的有前途的新方法,对大部分材料的选择,半导体纳米线的太阳能电池和等离子体结构,用于增强光吸收,使新的设计方法开辟了非常薄的光伏器件

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