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MnS Incorporation into Higher Manganese Silicide Yields a Green Thermoelectric Composite with High Performance/Price Ratio

机译:MnS掺入高锰硅化物中可产生具有高性能/高性价比的绿色热电复合材料

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Thermoelectric materials that can directly convert heat to electrical energy offer a viable solution for reducing the usage of fossil energy by harvesting waste heat resources. Higher manganese silicide (HMS) is a naturally abundant, eco‐friendly, and low‐cost p‐type thermoelectric semiconductor with high power factor (PF); however, its figure of merit ( ZT ) is limited by intrinsically high thermal conductivity (κ). For effectively enhancing the thermoelectric performance of HMS and avoiding the use of expensive or toxic elements, such as Re, Te, or Pb, a green p‐type MnS with high Seebeck coefficient ( S ) and low κ is incorporated into the HMS matrix to form MnS/HMS composites. The incorporation of MnS leads to a 31% reduction of κ and a 10% increase of S . The ZT value increases by ≈48% from 0.40 to 0.59 at 823 K. Correspondingly, performance/price ratio is first proposed to evaluate the practical value of thermoelectric materials, which is higher than those of the vast majority of current thermoelectric materials. This study provides an overview of enhancing ZT of HMS and reducing costs, which may also be applicable to other thermoelectric materials.
机译:可以直接将热量转换为电能的热电材料为通过收集废热资源减少化石能源的使用提供了可行的解决方案。高锰硅化物(HMS)是一种天然的,生态友好且低成本的p型热电半导体,具有高功率因数(PF)。但是,其品质因数(ZT)受固有的高导热率(κ)限制。为了有效地提高HMS的热电性能并避免使用昂贵或有毒的元素,例如Re,Te或Pb,将具有高塞贝克系数(S)和低κ的绿色p型MnS掺入HMS基质中以形成MnS / HMS复合材料。 MnS的掺入导致κ降低31%,S升高10%。 ZT值在823 K时从0.40增加到0.59≈48%。相应地,首先提出了性能/价格比来评估热电材料的实用价值,该实用价值高于大多数当前热电材料的实用价值。这项研究概述了提高HMS的ZT和降低成本的方法,这也可能适用于其他热电材料。

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