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Recent advances in printable thermoelectric devices: materials, printing techniques, and applications

机译:可印刷热电装置的最新进展:材料,印刷技术和应用

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摘要

Thermoelectric devices have great potential as a sustainable energy conversion technology to harvest waste heat and perform spot cooling with high reliability. However, most of the thermoelectric devices use toxic and expensive materials, which limits their application. These materials also require high-temperature fabrication processes, limiting their compatibility with flexible, bio-compatible substrate. Printing electronics is an exciting new technique for fabrication that has enabled a wide array of biocompatible and conformable systems. Being able to print thermoelectric devices allows them to be custom made with much lower cost for their specific application. Significant effort has been directed toward utilizing polymers and other bio-friendly materials for low-cost, lightweight, and flexible thermoelectric devices. Fortunately, many of these materials can be printed using low-temperature printing processes, enabling their fabrication on biocompatible substrates. This review aims to report the recent progress in developing high performance thermoelectric inks for various printing techniques. In addition to the usual thermoelectric performance measures, we also consider the attributes of flexibility and the processing temperatures. Finally, recent advancement of printed device structures is discussed which aims to maximize the temperature difference across the junctions.
机译:热电装置具有可持续能源转换技术的潜力,以收获废热,并具有高可靠性的斑点冷却。然而,大多数热电装置使用毒性和昂贵的材料,这限制了它们的应用。这些材料还需要高温制造工艺,限制其与柔性生物相容的基材的相容性。印刷电子产品是一种令人兴奋的制造技术,其使能够实现各种生物相容性和可适得的系统。能够打印热电设备允许它们是定制的,其特定应用的成本更低。针对低成本,轻质和柔性热电装置的热聚合物和其他生物友好型材料,旨在实现大量努力。幸运的是,可以使用低温印刷工艺印刷许多这些材料,使其在生物相容性衬底上的制造。该审查旨在报告最近为各种印刷技术开发高性能热电油墨的进展。除了通常的热电性能措施外,还考虑灵活性和加工温度的属性。最后,讨论了最近的印刷装置结构的进步,其目的是最大化整个交叉点的温差。

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  • 来源
    《RSC Advances》 |2020年第14期|共14页
  • 作者单位

    Univ Melbourne ARC Res Hub Graphene Enabled Ind Transformat Dept Elect &

    Elect Engn Parkville Vic 3010 Australia;

    Univ Melbourne ARC Res Hub Graphene Enabled Ind Transformat Dept Elect &

    Elect Engn Parkville Vic 3010 Australia;

    Univ Melbourne ARC Res Hub Graphene Enabled Ind Transformat Dept Elect &

    Elect Engn Parkville Vic 3010 Australia;

    Univ Melbourne ARC Res Hub Graphene Enabled Ind Transformat Dept Elect &

    Elect Engn Parkville Vic 3010 Australia;

    Univ Cincinnati Dept Elect Engn &

    Comp Sci Dept Mech &

    Mat Engn Cincinnati OH 45221 USA;

    Univ Melbourne ARC Res Hub Graphene Enabled Ind Transformat Dept Elect &

    Elect Engn Parkville Vic 3010 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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