材料科学
纳米复合材料
纳米尺度
热电效应
热电材料
超晶格
纳米结构
纳米技术
塞贝克系数
光电子学
功勋
复合材料
热导率
热力学
物理
作者
M. S. Dresselhaus,Gang Chen,Ming Tang,Ronggui Yang,Hohyun Lee,Dezhi Wang,Zhifeng Ren,Jean‐Pierre Fleurial,P. Gogna
标识
DOI:10.1002/adma.200600527
摘要
Abstract Many of the recent advances in enhancing the thermoelectric figure of merit are linked to nanoscale phenomena found both in bulk samples containing nanoscale constituents and in nanoscale samples themselves. Prior theoretical and experimental proof‐of‐principle studies on quantum‐well superlattice and quantum‐wire samples have now evolved into studies on bulk samples containing nanostructured constituents prepared by chemical or physical approaches. In this Review, nanostructural composites are shown to exhibit nanostructures and properties that show promise for thermoelectric applications, thus bringing together low‐dimensional and bulk materials for thermoelectric applications. Particular emphasis is given in this Review to the ability to achieve 1) a simultaneous increase in the power factor and a decrease in the thermal conductivity in the same nanocomposite sample and for transport in the same direction and 2) lower values of the thermal conductivity in these nanocomposites as compared to alloy samples of the same chemical composition. The outlook for future research directions for nanocomposite thermoelectric materials is also discussed.
科研通智能强力驱动
Strongly Powered by AbleSci AI