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对混合钙钛矿中高性能热电响应起源的原子尺度洞察。

Atomistic Insights into the Origin of High-Performance Thermoelectric Response in Hybrid Perovskites.

作者信息

Shi Wen, Yao Mingjia, Wu Xiaomei, Zhou Tingxia, Yong Xue, Deng Tianqi, Ma Huili, Xi Jinyang

机构信息

School of Chemistry, Sun Yat-sen University, Guangzhou, 510006, China.

Materials Genome Institute, Shanghai University, Shanghai, 200444, China.

出版信息

Adv Sci (Weinh). 2023 Jul;10(20):e2300666. doi: 10.1002/advs.202300666. Epub 2023 May 11.

Abstract

Due to their tantalizing prospect of heat-electricity interconversion, hybrid organic-inorganic perovskites have sparked considerable research interests recently. Nevertheless, understanding their complex interplay between the macroscopic properties, nonintuitive transport processes, and basic chemical structures still remains far from completion, although it plays a fundamental role in systematic materials development. On the basis of multiscale first-principles calculations, this understanding is herein advanced by establishing a comprehensive picture consisting of atomic and charge dynamics. It is unveiled that the ultralow room-temperature lattice thermal conductivity (≈0.20 W m K ) of hybrid perovskites is critical to their decent thermoelectric figure of merit (≈0.34), and such phonon-glass behavior stems from not only the inherent softness but also the strong anharmonicity. It is identified that the 3D electrostatic interaction and hydrogen-bonded networks between the PbI cage and embedded cations result in the strongly coupled motions of inorganic framework and cation, giving rise to their high degree of anharmonicity. Furthermore, such coupled motions bring about low-frequency optical vibrational modes, which leads to the dominant role of electron scattering with optical phonons in charge transport. It is expected that these new atomistic-level insights offer a standing point where the performance of thermoelectric perovskites can be further enhanced.

摘要

由于有机-无机杂化钙钛矿具有诱人的热电相互转换前景,近年来引发了大量的研究兴趣。然而,尽管其在系统的材料开发中起着基础性作用,但要理解其宏观性质、非直观的输运过程和基本化学结构之间的复杂相互作用仍远未完成。基于多尺度第一性原理计算,本文通过建立一个由原子和电荷动力学组成的综合图景,推进了这一认识。结果表明,杂化钙钛矿极低的室温晶格热导率(≈0.20 W m⁻¹ K⁻¹)对其良好的热电优值(≈0.34)至关重要,而这种声子玻璃行为不仅源于其固有的柔软性,还源于强烈的非谐性。研究发现,PbI笼与嵌入阳离子之间的三维静电相互作用和氢键网络导致了无机骨架和阳离子的强烈耦合运动,从而产生了高度的非谐性。此外,这种耦合运动产生了低频光学振动模式,这导致了光学声子与电子散射在电荷输运中起主导作用。预计这些新的原子水平见解将为进一步提高热电钙钛矿的性能提供一个立足点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2eb/10369277/0913a8f4fc81/ADVS-10-2300666-g003.jpg

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