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Materials Availability Expands The Opportunity For Large-scale Photovoltaics Deployment

机译:材料可用性扩大了大规模光伏部署的机会

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Solar photovoltaics have great promise for a low-carbon future but remain expensive relative to other technologies. Greatly increased penetration of photovoltaics into global energy markets requires an expansion in attention from designs of high-performance to those that can deliver significantly lower cost per kilowatt-hour. To evaluate a new set of technical and economic performance targets, we examine material extraction costs and supply constraints for 23 promising semiconducting materials. Twelve composite materials systems were found to have the capacity to meet or exceed the annual worldwide electricity consumption of 17 000 TWh, of which nine have the potential for a significant cost reduction over crystalline silicon. We identify a large material extraction cost (cents/watt) gap between leading thin film materials and a number of unconventional solar cell candidates including FeS_2, CuO, and Zn_3P_2. We find that devices performing below 10% power conversion efficiencies deliverthe same lifetime energy output as those above 20% when a 3/4 material reduction is achieved. Here, we develop a roadmap emphasizing low-cost alternatives that could become a dominant new approach for photovoltaics research and deployment.
机译:太阳能光伏技术有望实现低碳未来,但相对于其他技术而言仍然昂贵。光伏技术在全球能源市场中的渗透率大大提高,需要将注意力从高性能设计扩展到可以显着降低每千瓦时成本的设计。为了评估一套新的技术和经济绩效目标,我们检查了23种有前景的半导体材料的材料提取成本和供应限制。发现十二个复合材料系统的容量可以满足或超过全球每年的电力消耗17,000 TWh,其中九个具有比晶体硅显着降低成本的潜力。我们发现领先的薄膜材料与包括FeS_2,CuO和Zn_3P_2在内的许多非常规太阳能电池之间存在巨大的材料提取成本(美分/瓦)差距。我们发现,当实现3/4的材料减少时,功率转换效率低于10%的设备可提供与20%以上的设备相同的寿命能量输出。在这里,我们制定了路线图,着重强调了低成本的替代品,这些替代品可能会成为光伏研究和部署的主要新方法。

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