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用于太阳能电池应用的混合ABX钙钛矿化合物的形成:有效离子半径的第一性原理计算和容忍因子的确定。

Formation of hybrid ABX perovskite compounds for solar cell application: first-principles calculations of effective ionic radii and determination of tolerance factors.

作者信息

Becker Markus, Klüner Thorsten, Wark Michael

机构信息

Institute of Chemistry, Carl von Ossietzky University Oldenburg, Carl-von-Ossietzky Str. 9-11, 26129 Oldenburg, Germany.

出版信息

Dalton Trans. 2017 Mar 14;46(11):3500-3509. doi: 10.1039/c6dt04796c.

Abstract

The development of hybrid organic-inorganic perovskite solar cells is one of the most rapidly growing fields in the photovoltaic community and is on its way to challenge polycrystalline silicon and thin film technologies. High power conversion efficiencies can be achieved by simple processing with low cost. However, due to the limited long-term stability and environmental toxicity of lead in the prototypic CHNHPbI, there is a need to find alternative ABX constitutional combinations in order to promote commercialization. The Goldschmidt tolerance factor and the octahedral factor were found to be necessary geometrical concepts to evaluate which perovskite compounds can be formed. It was figured out that the main challenge lies in estimating an effective ionic radius for the molecular cation. We calculated tolerance factors and octahedral factors for 486 ABX monoammonium-metal-halide combinations, where the steric size of the molecular cation in the A-position was estimated concerning the total charge density. A thorough inquiry about existing mixed organic-inorganic perovskites was undertaken. Our results are in excellent agreement with the reported hybrid compounds and indicate the potential existence of 106 ABX combinations hitherto not discussed in the literature, giving hints for more intense research on prospective individual candidates.

摘要

有机-无机杂化钙钛矿太阳能电池的发展是光伏领域中发展最为迅速的领域之一,并且正在挑战多晶硅和薄膜技术。通过简单的低成本工艺即可实现高功率转换效率。然而,由于原型CH₃NH₃PbI₃中铅的长期稳定性有限且具有环境毒性,因此需要寻找替代的ABX结构组合以促进商业化。发现戈尔德施密特容忍因子和八面体因子是评估可以形成哪些钙钛矿化合物的必要几何概念。结果表明,主要挑战在于估计分子阳离子的有效离子半径。我们计算了486种ABX单铵-金属-卤化物组合的容忍因子和八面体因子,其中根据总电荷密度估计了A位分子阳离子的空间尺寸。对现有的有机-无机混合钙钛矿进行了全面研究。我们的结果与已报道的混合化合物非常吻合,并表明迄今文献中未讨论的106种ABX组合可能存在,这为对潜在的单个候选物进行更深入的研究提供了线索。

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