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在不同配方和涂布条件下用银纳米颗粒悬浮乳液制备的透明导电薄膜的光电性能

Optoelectrical Properties of Transparent Conductive Films Fabricated with Ag Nanoparticle-Suspended Emulsion under Various Formulations and Coating Conditions.

作者信息

Kim Seong Hwan, Park Geunyeop, Kim Kyu-Byung, Shin Yong-Woo, Jung Hyun Wook

机构信息

Department of Chemical and Biological Engineering, Korea University, Seoul 02841, Republic of Korea.

Dof Inc., Hwaseong-si 18468, Republic of Korea.

出版信息

Nanomaterials (Basel). 2023 Mar 27;13(7):1191. doi: 10.3390/nano13071191.

Abstract

Transparent conductive films (TCFs) were fabricated through bar-coating with a water-in-toluene emulsion containing Ag nanoparticles (AgNPs). Morphological changes in the self-assembled TCF networks under different emulsion formulations and coating conditions and the corresponding optoelectrical properties were investigated. In preparing various emulsions, the concentration of AgNPs and the water weight fraction were important factors for determining the size of the water droplets, which plays a decisive role in controlling the optoelectrical properties of the TCFs affected by open cells and conductive lines. An increased concentration of AgNPs and decreased water weight fraction resulted in a decreased droplet size, thus altering the optoelectrical properties. The coating conditions, such as coating thickness and drying temperature, changed the degree of water droplet coalescence due to different emulsion drying rates, which also affected the final self-assembled network structure and optoelectrical properties of the TCFs. Systematically controlling various material and process conditions, we explored a coating strategy to enhance the optoelectrical properties of TCFs, resulting in an achieved transmittance of 86 ± 0.2%, a haze of 4 ± 0.2%, and a sheet resistance of 35 ± 2.8 Ω/□. TCFs with such optimal properties can be applied to touch screen fields.

摘要

通过用含有银纳米颗粒(AgNPs)的甲苯包水乳液进行刮涂制备透明导电薄膜(TCFs)。研究了在不同乳液配方和涂布条件下自组装TCF网络的形态变化以及相应的光电性能。在制备各种乳液时,AgNPs的浓度和水的重量分数是决定水滴大小的重要因素,而水滴大小在控制受开孔和导电线影响的TCFs的光电性能方面起决定性作用。AgNPs浓度的增加和水重量分数的降低导致液滴尺寸减小,从而改变了光电性能。涂布条件,如涂布厚度和干燥温度,由于不同的乳液干燥速率而改变了水滴聚并的程度,这也影响了TCFs最终的自组装网络结构和光电性能。通过系统地控制各种材料和工艺条件,我们探索了一种提高TCFs光电性能的涂布策略,实现了86±0.2%的透过率、4±0.2%的雾度和35±2.8Ω/□的方块电阻。具有这种最佳性能的TCFs可应用于触摸屏领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7be/10096821/e0c3b6c9a7b6/nanomaterials-13-01191-g001.jpg

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