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纳米结构调控诱导 CaCoO 热电器件的柔性

Nanostructural Tailoring to Induce Flexibility in Thermoelectric CaCoO Thin Films.

机构信息

Thin Film Physics Division, Department of Physics, Chemistry, and Biology (IFM), Linköping University , SE-581 83 Linköping, Sweden.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 2;9(30):25308-25316. doi: 10.1021/acsami.7b06301. Epub 2017 Jul 24.

Abstract

Because of their inherent rigidity and brittleness, inorganic materials have seen limited use in flexible thermoelectric applications. On the other hand, for high output power density and stability, the use of inorganic materials is required. Here, we demonstrate a concept of fully inorganic flexible thermoelectric thin films with CaCoO-on-mica. CaCoO is promising not only because of its high Seebeck coefficient and good electrical conductivity but also because of the abundance, low cost, and nontoxicity of its constituent raw materials. We show a promising nanostructural tailoring approach to induce flexibility in inorganic thin-film materials, achieving flexibility in nanostructured CaCoO thin films. The films were grown by thermally induced phase transformation from CaO-CoO thin films deposited by reactive rf-magnetron cosputtering from metallic targets of Ca and Co to the final phase of CaCoO on a mica substrate. The pattern of nanostructural evolution during the solid-state phase transformation is determined by the surface energy and strain energy contributions, whereas different distributions of CaO and CoO phases in the as-deposited films promote different nanostructuring during the phase transformation. Another interesting fact is that the CaCoO film is transferable onto an arbitrary flexible platform from the parent mica substrate by etch-free dry transfer. The highest thermoelectric power factor obtained is above 1 × 10 W m K in a wide temperature range, thus showing low-temperature applicability of this class of materials.

摘要

由于无机材料固有的刚性和脆性,其在柔性热电应用中的使用受到了限制。另一方面,为了获得高的输出功率密度和稳定性,需要使用无机材料。在这里,我们展示了一种具有云母上 CaCoO 的全无机柔性热电薄膜的概念。CaCoO 不仅因为其具有高的塞贝克系数和良好的电导率,而且因为其组成原料的丰富、低成本和无毒而具有前景。我们展示了一种有前途的纳米结构调整方法,以在无机薄膜材料中诱导柔韧性,从而在纳米结构 CaCoO 薄膜中实现柔韧性。该薄膜是通过热诱导从 Ca 和 Co 的金属靶材的反应性射频磁控共溅射沉积的 CaO-CoO 薄膜到云母衬底上的最终 CaCoO 相来生长的。固态相变过程中纳米结构演化的模式由表面能和应变能贡献决定,而在沉积膜中不同的 CaO 和 CoO 相分布则在相变过程中促进了不同的纳米结构形成。另一个有趣的事实是,CaCoO 薄膜可以通过无蚀刻的干法转移从云母母基板转移到任意柔性平台上。在很宽的温度范围内获得的最高热电功率因子超过 1×10 W m K,从而显示出此类材料在低温下的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc30/5548412/55f392f3f793/am-2017-06301h_0001.jpg

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