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Flexible transparent conducting films with embedded silver networks composed of bimodal-sized nanoparticles for heater application

机译:柔性透明导电膜,具有由双峰型纳米粒子组成的嵌入式银网络,用于加热器应用

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摘要

A facile one-pot synthetic method for preparing the Ag nanoparticle inks with a bimodal size distribution was newly devised and they were successfully employed as a conducting filler to form the metal-mesh type transparent conducting electrodes on the flexible substrate. Bimodalsized Ag nanoparticles were synthesized through the polyol process, and their size variation was occurred via finely tuned composition ratio between Ag+ ions and polymeric capping agents. The prepared bimodal-sized Ag nanoparticles exhibited the form of well-dispersed Ag nanoparticle inks without adding any dispersants and dispersion process. By filling the patterned micro-channels engraved on the flexible polymer substrate using a bimodal-sized Ag nanoparticle ink, a metal-mesh type transparent electrode (transmittance: 90% at 550 nm, haze: 1.5, area: 8 x 8 cm(2)) was fabricated. By applying DC voltage to the mesh type electrode, a flexible transparent joule heater was successfully achieved with a performance of 4.5 degrees C s(-1) heat-up rate at a low input power density.
机译:新设计了一种用于制备具有双峰尺寸分布的Ag纳米粒子油墨的容易一罐合成方法,并成功地用作导电填料,以在柔性基板上形成金属网型透明导电电极。通过多元醇工艺合成双焦化的Ag纳米颗粒,并通过Ag +离子和聚合物封端剂之间的细化组合物比发生它们的尺寸变化。制备的双峰型Ag纳米颗粒在不添加任何分散剂和分散体的情况下表现出良好分散的Ag纳米粒子油墨的形式。通过使用双峰型Ag纳米粒子油墨填充刻在柔性聚合物基材上的图案化的微通道,金属网型透明电极(透射率:90%在550nm,雾度:1.5,面积:8×8cm(2 ))是制造的。通过将DC电压施加到网状型电极,成功实现了柔性透明焦耳加热器,其性能以低输入功率密度为4.5摄氏度(-1)加热速率。

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