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2D and 3D nanostructuring strategies for thermoelectric materials

机译:2 d和3 d纳米结构的策略热电材料

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摘要

Thermoelectric materials have attracted increased research attention as the implementation of various nanostructures has potential to improve both their performance and applicability. A traditional limitation of thermoelectric performance in bulk materials is the interconnected nature of the individual parameters (for example, it is difficult to decrease thermal conductivity while maintaining electrical conductivity), but through the rational design of nanoscale structures, it is possible to decouple these relationships and greatly enhance the performance. For 2D strategies, newly investigated materials such as graphene, transition metal dichalcogenides, black phosphorus, etc. are attractive thanks to not only their unique thermoelectric properties, but also potential advantages in ease of processing, flexibility, and lack of rare or toxic constituent elements. For 3D strategies, the use of induced porosity, assembly of various nanostructures, and nanoscale lithography all offer specific advantages over bulk materials of the same chemical composition, most notably decreased thermal conductivity due to phonon scattering and enhanced Seebeck coefficient due to energy filtering. In this review, a general summary of the popular techniques and strategies for 2D and 3D thermoelectric materials will be provided, along with suggestions for future research directions based on the observed trends.
机译:热电材料吸引了增加研究关注的实现各种纳米结构潜在的改善他们的性能和适用性。传统的热电限制性能是散装材料相互关联的个体的性质参数(例如,很难降低热导率,同时保持导电性),但是通过设计合理的纳米级结构,它是可能这些关系和分离大大提高性能。策略,新材料,如调查石墨烯,过渡金属dichalcogenides,黑色的磷等有吸引力的感谢只有他们独特的热电特性,但是也易于处理的潜在优势,灵活性,以及缺乏罕见的或者有毒组成元素。次生孔隙度、组装各种纳米结构和纳米光刻技术提供具体优势散装材料相同的化学成分,尤其是减少由于声子导热系数散射和增强的塞贝克系数能源过滤。摘要流行的技术和策略对于2 d和3 d热电材料提供,以及建议的未来研究方向的基础上观察到的趋势。

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