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Recent advances in thermoelectric materials and solar thermoelectric generators - a critical review

机译:热电材料和太阳能热电发电机的最新进展-评论

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摘要

Due to the fact that much of the world's best solar resources are inversely correlated with population centers, significant motivation exists for developing technology which can deliver reliable and autonomous conversion of sunlight into electricity. Thermoelectric generators are gaining incremental ground in this area since they do not require moving parts and work well in remote locations. Thermoelectric materials have been extensively used in space satellites, automobiles, and, more recently, in solar thermal applications as power generators, known as solar thermoelectric generators (STEG). STEG systems are gaining significant interest in both concentrated and non-concentrated systems and have been employed in hybrid configurations with solar thermal and photovoltaic systems. In this article, the key developments in the field of thermoelectric materials and on-going research work on STEG design conducted by various researchers to date are critically reviewed. Finally, we highlight the strategic research directions being undertaken to make highly efficient thermoelectric materials for developing a cost-effective STEG system, which could serve to bring this technology towards commercial readiness.
机译:由于世界上许多最佳的太阳能资源与人口中心成反比,因此存在开发可将太阳光可靠可靠地自动转换为电能的技术的巨大动力。由于热电发电机不需要活动部件,并且在偏远地区也能正常工作,因此它们在该领域逐渐获得发展。热电材料已广泛用于太空卫星,汽车,以及最近在太阳能热应用中作为发电机,称为太阳能热电发电机(STEG)。 STEG系统在集中式系统和非集中式系统中都引起了极大的兴趣,并已与太阳能热和光伏系统混合使用。在本文中,对热电材料领域的关键发展以及迄今为止由不同研究人员进行的有关STEG设计的持续研究工作进行了严格的回顾。最后,我们重点介绍了正在采取的战略研究方向,以制造高效的热电材料来开发具有成本效益的STEG系统,这可以使该技术迈向商业化准备阶段。

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