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首页> 外文期刊>Thin Solid Films >Semi-transparent copper iodide thin films on flexible substrates as p-type thermolegs for a wearable thermoelectric generator
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Semi-transparent copper iodide thin films on flexible substrates as p-type thermolegs for a wearable thermoelectric generator

机译:柔性基板上的半透明铜碘化物薄膜作为可穿戴热电发电机的P型热电子

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摘要

The article presents crystal structure, composition, optical, electrical and thermoelectric properties of semi-transparent CuI films produced in different modes of the cost-effective and large scalable method Successive Ionic Layer Adsorption and Reaction (SILAR) on flexible poly(ethylene terephthalate) (PET) substrates. The obtained data together with the analysis of output thermoelectric characteristics of p-type thermolegs based on these CuI films are used to select the SILAR mode to create semi-transparent p-type thermolegs for a new flexible wearable thin film thermoelectric generator (TEG). The best obtained flexible p-CuI thin film single thermoleg demonstrates output power 17.1 mu W/m(2) at the temperature gradient Delta T = 35 K at near-room temperatures. Therefore, CuI films produced in such mode of the SILAR method on the flexible PET substrates can be used as a part of a new lightweight low cost flexible wearable thin film TEG for a production of electrical energy for low-power devices due to absorption of low-potential heat.
机译:本文介绍了以不同模式生产的半透明铜膜的晶体结构,组成,光学,电气和热电性能,其在柔性聚(乙二醇酯)上连续的离子层吸附和反应(Sill)(宠物)基材。所获得的数据与基于这些CuI膜的P型热电子的输出热电特性的分析用于选择SILL模式,为新的柔性可佩戴薄膜热电发电机(TEG)产生半透明P型热电子。最佳获得的柔性P-CUI薄膜单个Thermolog在接近室温下的温度梯度δT= 35k处表现出输出功率17.1μW/ m(2)。因此,在柔性PET基板上的Sill方法的这种模式中产生的CUI膜可以用作新的轻质低成本柔性可穿戴薄膜TEG的一部分,用于生产由于低功耗而导致的低功耗器件的电能 - 热量。

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