在多晶 SrTiO3-xHx 中同时实现类单晶电子传输和强声子散射

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-09-30 DOI:10.1021/acsaelm.4c0130610.1021/acsaelm.4c01306
Takayoshi Katase*, Seiya Nomoto, Xinyi He, Suguru Kitani, Takashi Honda, Hidenori Hiramatsu, Hideo Hosono and Toshio Kamiya*, 
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引用次数: 0

摘要

同时实现低热导率(κ)和高电子电导率(σ)一直是开发高性能热电体材料的挑战性问题。钛酸锶一直被认为是一种对环境无害的热电材料,但其在晶界(GBs)上固有的高κ和低σ限制了其性能。最近,我们通过氢化物阴离子(H-)置换(即 SrTiO3-xHx)解决了这一障碍。在本文中,为了阐明 H- 替代对电子和声子散射的影响,我们分析了不同 H- 浓度 x = 0.057-0.216 的 SrTiO3-xHx 块体的电子和热传输特性的温度依赖性。电子-电子散射和杂质散射主导了载流子迁移率;然而,GB 并未干扰电子传输,因此,SrTiO3-xHx 块体在 4 K 时实现了接近 104 S/cm 的高σ。在室温下,H-取代同时将κ从SrTiO3的9.7 W/(mK)抑制到x = 0.216的SrTiO3-xHx块体的5.0 W/(mK)。我们发现,由于 Ti-(O,H)键的化学键态存在很大差异,声子在弹性应变场中的散射在降低 κ 方面表现突出。通过同时实现类似单晶的电子传输和强声子散射,H- 替代方法为开发环境友好型热电氧化物提供了可能。
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Simultaneous Realization of Single-Crystal-Like Electron Transport and Strong Phonon Scattering in Polycrystalline SrTiO3–xHx

Simultaneous realization of low thermal conductivity (κ) and high electronic conductivity (σ) has been a challenging issue in developing high-performance thermoelectric bulk materials. SrTiO3 has been expected as an environmentally benign thermoelectric material, but the intrinsically high κ and low σ across the grain boundaries (GBs) restrict their performance. We recently tackled this obstacle by applying hydride anion (H) substitution, namely, SrTiO3–xHx. In this paper, in order to clarify the H substitution effect on electron and phonon scattering, we analyzed the temperature dependence of electronic and thermal transport properties of the SrTiO3–xHx bulks with different H concentrations x = 0.057–0.216. The carrier mobility was dominated by electron–electron scattering and impurity scattering; however, the GBs did not disturb the electron transport, and thus, the high σ approaching to 104 S/cm at 4 K was realized in SrTiO3–xHx bulks. The H substitution concurrently suppressed the κ from 9.7 W/(mK) of SrTiO3 to 5.0 W/(mK) of the SrTiO3–xHx bulk with x = 0.216 at room temperature. The phonon scattering by elastic strain field due to the largely different chemical bonding state of Ti-(O,H) bonds is found to be prominent for reducing κ. The H substitution approach would provide a possibility for developing environmentally benign thermoelectric oxides by the simultaneous realization of single-crystal-like electron transport and strong phonon scattering.

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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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