Low-cost perovskite materials for decentralized energy generation and Department of Defense environmental impact reduction

Andre Slonopas, Lissette Rodriguez-Cabanas, C. Duong, D. Baker, V. Parameshwaran, Stanley Bradley
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Abstract

Metal halide perovskite solar cells (PSCs) remain one of the most discussed and researched materials in the world due to their promising materials characteristics and performance metrics. PSCs possess qualities that find applications in civilian and military sectors. PSCs have been demonstrated to have power conversion efficiencies (PCE) of over 24%, 30% reduction in deposition costs, direct band gap with tunability ranging from 1.1-1.8 eV, and the ability for synthesis at room temperature. This correspondence seeks to shed light on the current Department of Defense (DoD) efforts in PSCs, as well as demonstrate reduction in cost, environmental impact, and CO2 footprint. Successes in stabilization of the materials and challenges to be overcome for perovskites are discussed. This work shows the possibility of integrating perovskite materials with existing mature solar panel technologies for successful marketization of perovskites and diversification of applications. Furthermore, this work demonstrates the opportunities that are presented by perovskite materials to the DoD community and unique challenges that are overcome with the application of this technology.
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低成本钙钛矿材料用于分散能源生产和国防部环境影响减少
金属卤化物钙钛矿太阳能电池(PSCs)由于其具有良好的材料特性和性能指标,一直是世界上讨论和研究最多的材料之一。psc具有在民用和军事部门应用的品质。PSCs的功率转换效率(PCE)超过24%,沉积成本降低30%,直接带隙可调范围在1.1-1.8 eV之间,并且能够在室温下合成。本文旨在阐明美国国防部(DoD)目前在psc方面的努力,并展示其在成本、环境影响和二氧化碳足迹方面的降低。讨论了钙钛矿在稳定材料方面取得的成功和需要克服的挑战。这项工作表明,钙钛矿材料与现有成熟的太阳能电池板技术相结合,可以成功实现钙钛矿的市场化和应用的多样化。此外,这项工作还展示了钙钛矿材料为国防部带来的机遇,以及该技术应用所克服的独特挑战。
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