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卤化铅钙钛矿中热载流子的动态筛选和缓慢冷却。

Dynamic Screening and Slow Cooling of Hot Carriers in Lead Halide Perovskites.

机构信息

Department of Chemistry, Columbia University, New York, NY, 10027, USA.

出版信息

Adv Mater. 2019 Nov;31(47):e1803054. doi: 10.1002/adma.201803054. Epub 2019 Jan 23.

Abstract

Among the exceptional properties of lead halide perovskites (LHPs) is the ultraslow cooling of hot carriers. Carrier densities below the Mott density for large polarons (≤ ≈10 cm ) are focused on here. As in other semiconductors, a nascent hot electron distribution initially cools down via emission of longitudinal optical (LO) phonons on the 10 -10 s timescale. What distinguishes LHPs from conventional semiconductors is the exceptionally efficient screening in the former. The dielectric screening in LHPs on the 10 s timescale results in an order-of-magnitude reduction in the Coulomb potential upon the formation of a large polaron, likely with ferroelectric-like local ordering. Further LO-phonon emission is inhibited, and this leads to partial retention of hot electron energy on the 10 s timescale, more so in hybrid LHPs than in their all-inorganic counterparts. Further cooling of hot polarons occurs on the 10 s timescale, and this can be attributed to the slow diffusion of heat out of the large polaron volume due to the low thermal conductivity of LHPs. Like other carrier properties, slow hot carrier cooling in LHPs can be intimately related to efficient screening in a soft, anharmonic, and dynamically disordered lattice.

摘要

卤铅钙钛矿(LHPs)具有一些非凡的性质,其中包括热载流子的超慢速冷却。这里关注的是载流子密度低于大极化子的莫特密度(≤≈10 cm )。与其他半导体一样,最初的热电子分布会通过在 10 -10 s 时间尺度上发射纵光学(LO)声子来冷却。与传统半导体不同的是,LHPs 的介电屏蔽非常有效。在 LHPs 中,在形成大极化子时,由于具有类似铁电的局部有序性,LO 声子的介电屏蔽在 10 s 的时间尺度上导致库仑势降低了一个数量级。这进一步抑制了 LO 声子的发射,导致在 10 s 的时间尺度上部分保留了热电子的能量,在杂化 LHPs 中比在全无机对应物中更为明显。在 10 s 的时间尺度上,热极化子进一步冷却,这可以归因于由于 LHPs 的热导率低,热从大极化子体积中缓慢扩散。与其他载流子性质一样,LHPs 中缓慢的热载流子冷却也与软、非谐和、动态无序晶格中的有效屏蔽密切相关。

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