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The Influence of Thermal Annealing Treatment Time on the Performance of Silver Nanowire-based Transparent Thin Film Heater

机译:热退火处理时间对银纳米线透明薄膜加热器性能的影响

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Transparent thin-film heater (TTFH) is an important electronic device component requiring high transmittance material and a low sheet resistance with efficient energy conversion. In general, TTFH uses indium tin oxide, but it is brittle and unstable in acidic atmospheres, along with having a slow thermal response and high cost. This condition inspires the exploration of silver nanowires (Ag NWs) as a new material for transparent heater applications. In this study, Ag NWs were synthesized via a typical polyol synthesis process and deposited on glass substrates by using a spin coating method. The thermal annealing treatment was performed at 200 °C with three different time periods (10, 20 and 30 min) to enhance the performance of TTFH. The results show that the Ag NWs were successfully synthesized with a diameter of 40-50 nm with varying lengths of 5~15 μm. The thermal annealing treatment of 10, 20 and 30 min produces agglomerates of Ag nanoparticles, decreases the length of Ag NWs and forms the nonconductive Ag_2O phase. This causes a decrease of transmittance and sheet resistance, which results in a decrease of figure-of-merit (FoM) from 204 × 10~(-5) Ω~(-1) to 3 × 10~(-5)Ω~(-1). The thermal annealing process also caused the temperature of the TTFH to decrease from 76.7 °C to 31.8 °C within 200 s when a voltage of 20 V was applied.
机译:透明薄膜加热器(TTFH)是一种重要的电子设备组件,需要高透射材料和具有高效能量转换的低薄层电阻。通常,TTFH使用氧化铟锡,但在酸性环境中脆弱,不稳定,具有缓慢的热响应和高成本。这种情况激发了银纳米线(Ag NWS)作为透明加热器应用的新材料的探索。在该研究中,通过使用旋涂法通过典型的多元醇合成方法合成Ag NWS并沉积在玻璃基板上。热退火处理在200℃下进行,具有三种不同的时间(10,20和30分钟)以增强TTFH的性能。结果表明,Ag NWS成功合成,直径为40-50nm,不同长度为5〜15μm。 10,20和30分钟的热退火处理产生Ag纳米颗粒的附聚物,降低Ag NWS的长度并形成非导电Ag_2O相。这导致透射率和薄层电阻的降低,这导致从204×10〜(-5)ω〜(-1)到3×10〜(-5)Ω〜 (-1)。当施加20V的电压时,热退火过程也使TTFH的温度降低到200秒内的76.7℃至31.8°C。

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