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首页> 外文期刊>Nanoscale >Versatility of bilayer metal oxide coatings on silver nanowire networks for enhanced stability with minimal transparency loss
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Versatility of bilayer metal oxide coatings on silver nanowire networks for enhanced stability with minimal transparency loss

机译:多功能性的双层金属氧化物涂层银纳米线网络为增强稳定性以最小的透明度损失

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摘要

Silver nanowire (AgNW) networks have been lately much investigated thanks to their physical properties and are therefore foreseen to play a key role in many industrial devices as transparent electrodes, but their stability can be an issue. Although it has been shown that thin metal oxide coatings enhance the stability of AgNW networks, such stabilization is achieved at the expense of transparency. We demonstrate that by depositing a second oxide coating, which acts as an antireflective layer, it is possible to obtain highly stable and transparent composite electrodes. AgNW networks were deposited by the airbrush method, and zinc oxide (ZnO) and aluminum oxide (Al2O3) coatings were deposited, by Atmospheric Pressure Spatial Atomic Layer Deposition (AP-SALD), using both glass and plastic substrates; therefore, the proposed fabrication method is low-cost and compatible with high-throughput scalable fabrication. The mechanical stability of bare, ZnO and ZnO/Al2O3-coated AgNWs upon bending is also presented. The obtained nanocomposites exhibit highly homogeneous and conformal oxide coatings with average thicknesses of a few tens of nanometers. Samples with bilayer coatings of 70 nm ZnO/70 nm Al2O3 still exhibit very good stability after annealing in air up to 450 degrees C for 6 repetitive cycles.
机译:银纳米线(AgNW)网络近来调查感谢他们的身体属性,因此预见发挥在许多工业设备的关键作用透明电极,但其稳定性是一个问题。金属氧化物涂层增强的稳定性AgNW网络,这种稳定是实现为代价的透明度。通过第二个氧化物涂层,这行为作为一个抗反射的层,它是可能的获得高度稳定和透明的复合电极。喷枪方法和氧化锌)和氧化铝(氧化铝)涂料沉积,大气压力空间原子层使用玻璃和沉积(AP-SALD)塑料基板;制造方法是低成本和兼容与高通量可伸缩的制造。裸露的机械稳定性,氧化锌氧化锌/ Al2O3-coated AgNWs弯曲也提出了。高度均匀的氧化和保形涂料平均厚度为几十纳米。纳米氧化锌/ 70纳米氧化铝仍然表现出很好在空气中退火450后稳定度6重复周期。

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