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Transparent Flexible Thermoelectric Material Based on Non-toxic Earth-Abundant p-Type Copper Iodide Thin Film

机译:基于无毒地球富集p型碘化铜薄膜的透明柔性热电材料

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摘要

Thermoelectric devices that are flexible and optically transparent hold unique promise for future electronics. However, development of 'invisible' thermoelectric elements is hindered by the lack of p-type transparent thermoelectric materials. Here we present the superior room-temperature thermoelectric performance of p-type transparent copper iodide (CuI) thin films deposited by industrially applicable room-temperature sputtering techniques. The optical transmittance is 60–85% in the visible and near-infrared regions. Large Seebeck coefficients and power factors of the obtained CuI thin films are analyzed based on a single-band model. The low thermal conductivity of the CuI films is attributed to a combined effect of the heavy element iodine and strong phonon scattering. Accordingly, we achieve a large thermoelectric figure of merit of ZT = 0.21 at 300 K for the CuI films, which is three orders of magnitude higher compared with state-of-the-art p-type transparent materials. A transparent and flexible CuI-based thermoelectric element is demonstrated.
机译:柔性且光学透明的热电设备对未来的电子产品具有独特的希望。但是,由于缺少p型透明热电材料,阻碍了“不可见”热电元件的开发。在这里,我们展示了通过工业上适用的室温溅射技术沉积的p型透明碘化铜(CuI)薄膜在室温下的优异热电性能。在可见光和近红外区域的光透射率为60-85%。基于单波段模型对获得的CuI薄膜的大Seebeck系数和功率因数进行了分析。 CuI薄膜的低热导率归因于重元素碘和强声子散射的共同作用。因此,对于CuI薄膜,我们在300 K时获得了ZT = 0.21的大热电品质因数,与最新的p型透明材料相比,其热值提高了三个数量级。说明了透明且柔性的基于CuI的热电元件。

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