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用于高性能柔性透明加热器的抗氧化混合金属氧化物/金属纳米点/银纳米线

Oxidation-resistant hybrid metal oxides/metal nanodots/silver nanowires for high performance flexible transparent heaters.

作者信息

Kim A-Young, Kim Min Kyu, Hudaya Chairul, Park Ji Hun, Byun Dongjin, Lim Jong Choo, Lee Joong Kee

机构信息

Center for Energy Convergence Research, Korea Institute of Science and Technology (KIST), Hwarang-ro 14-gil 5, Seongbuk-gu, Seoul 136-791, Republic of Korea.

Display team, Display group, IM Co., Ltd, 38 Madogongdan-ro 4-gil, Madomyeon, Hwaseong-si, Gyeonggi-do 445-861, Republic of Korea.

出版信息

Nanoscale. 2016 Feb 14;8(6):3307-13. doi: 10.1039/c5nr05794a.

Abstract

Despite its excellent optical, electrical, mechanical, and thermal performances, a silver nanowire (AgNW)-based transparent conducting heater (TCH) still demonstrates several drawbacks such as facile nanowire breakdown on application of a high DC voltage, easy oxidation when exposed to harsh environments, leading to increased surface resistivity, and high resistance among wire junctions causing nonhomogeneous temperature profiles. To overcome these issues, the AgNW was hybridized with other transparent heating materials made of fluorine-doped tin oxide (FTO) thin films and NiCr nanodots (FTO/NiCr/AgNW). The dispersed NiCr nanodots (∼50 nm) and FTO thin films (∼20 nm) electrically bridge the nanowire junctions leading to a decreased sheet resistance and uniform temperature profiles. The hybrid transparent heater shows excellent optical transmittance (>90%) and high saturation temperature (162 °C) at low applied DC voltage (6 V). Moreover, the FTO/NiCr/AgNW heater exhibits a stable sheet resistance in a hostile environment, hence highlighting the excellent oxidation-resistance of the heating materials. These results indicate that the proposed hybrid transparent heaters could be a promising approach to combat the inherent problems associated with AgNW-based transparent heaters for various functional applications.

摘要

尽管基于银纳米线(AgNW)的透明导电加热器(TCH)具有优异的光学、电学、机械和热学性能,但它仍存在一些缺点,例如在施加高直流电压时纳米线容易击穿,暴露于恶劣环境中时容易氧化,导致表面电阻率增加,以及线结处电阻高导致温度分布不均匀。为了克服这些问题,将AgNW与由氟掺杂氧化锡(FTO)薄膜和NiCr纳米点制成的其他透明加热材料(FTO/NiCr/AgNW)进行了杂交。分散的NiCr纳米点(约50纳米)和FTO薄膜(约20纳米)在电学上桥接纳米线结,导致方阻降低和温度分布均匀。这种混合透明加热器在低施加直流电压(6伏)下显示出优异的光学透过率(>90%)和高饱和温度(162°C)。此外,FTO/NiCr/AgNW加热器在恶劣环境中表现出稳定的方阻,因此突出了加热材料优异的抗氧化性。这些结果表明,所提出的混合透明加热器可能是解决与基于AgNW的透明加热器相关固有问题的一种有前途的方法,可用于各种功能应用。

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