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Lead halide perovskites: Crystal-liquid duality phonon glass electron crystals and large polaron formation

机译:卤化钙钛矿:晶液二元性声子玻璃电子晶体和大极化子形成

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摘要

Lead halide perovskites have been demonstrated as high performance materials in solar cells and light-emitting devices. These materials are characterized by coherent band transport expected from crystalline semiconductors, but dielectric responses and phonon dynamics typical of liquids. This “crystal-liquid” duality implies that lead halide perovskites belong to phonon glass electron crystals, a class of materials believed to make the most efficient thermoelectrics. We show that the crystal-liquid duality and the resulting dielectric response are responsible for large polaron formation and screening of charge carriers, leading to defect tolerance, moderate charge carrier mobility, and radiative recombination properties. Large polaron formation, along with the phonon glass character, may also explain the marked reduction in hot carrier cooling rates in these materials.
机译:卤化钙钛矿已被证明是太阳能电池和发光器件中的高性能材料。这些材料的特征是晶体半导体具有相干能带传输能力,但是液体具有典型的介电响应和声子动力学特性。这种“晶液”对偶性意味着卤化钙钛矿属于一种声子玻璃电子晶体,声子玻璃电子晶体被认为是制造最有效的热电材料的一类。我们表明,晶体-液体的对偶性和由此产生的介电响应负责大极化子的形成和电荷载流子的筛选,从而导致缺陷耐受性,适度的电荷载流子迁移率和辐射复合性能。大量的极化子形成以及声子玻璃的特征也可以解释这些材料中热载流子冷却速率的显着降低。

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