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通过表面钝化增强碲纳米线的热电性能

Thermoelectric Property Enhancement of Tellurium Nanowires by Surface Passivation.

作者信息

Shah Syed Zulfiqar Hussain, Aabdin Zainul, Tjiu Weng Weei, Nong Wei, Recatala-Gomez Jose, Chellappan Vijila, Zhai Wenhao, Repaka Durga Venkata Maheswar, Wu Gang, Hippalgaonkar Kedar, Nandhakumar Iris, Kumar Pawan

机构信息

Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore 138634, Republic of Singapore.

Department of Chemistry, University of Southampton, Southampton SO17 1BJ, U.K.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 4;16(35):46191-46199. doi: 10.1021/acsami.4c02469. Epub 2024 Aug 21.

DOI:10.1021/acsami.4c02469
PMID:39166740
Abstract

The pursuit of high-performance thermoelectric materials is of paramount importance in addressing energy sustainability and environmental concerns. Here, we explore the multifaceted impact of sulfur passivation in the matrix of tellurium nanowires (TeNWs), encompassing environmental control, thermoelectric properties, and charge carrier mobility. In this study, we present the facile production of TeNWs using an aqueous solution synthesis approach. The synthesized TeNWs were subsequently subjected to surface modification involving sulfur moieties. Our findings demonstrate that sulfur passivation not only effectively safeguards the nanowires from environmental degradation but also significantly augments their thermoelectric properties. Notably, the highest recorded values were achieved at 560 K for passivated tellurium nanowires, exhibiting a Seebeck coefficient of 246 μV/K, an electrical conductivity of 14.2 S/cm, and power factors of 86.7 μW/m-K. This strategy presents a promising avenue for the development of advanced thermoelectric materials for applications in energy harvesting, waste heat recovery, and sustainable energy conversion technologies.

摘要

追求高性能热电材料对于解决能源可持续性和环境问题至关重要。在此,我们探讨了碲纳米线(TeNWs)基质中硫钝化的多方面影响,包括环境控制、热电性能和电荷载流子迁移率。在本研究中,我们展示了使用水溶液合成方法简便地制备TeNWs。随后对合成的TeNWs进行了涉及硫部分的表面改性。我们的研究结果表明,硫钝化不仅有效地保护纳米线免受环境降解,而且显著增强了它们的热电性能。值得注意的是,钝化碲纳米线在560 K时达到了最高记录值,其塞贝克系数为246 μV/K,电导率为14.2 S/cm,功率因数为86.7 μW/m-K。该策略为开发用于能量收集、废热回收和可持续能源转换技术的先进热电材料提供了一条有前景的途径。

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