2019SID Symposium Digest of Technical PapersRequires access

42.4: Invited Paper: Silver nanowire networks as flexible, transparent, conducting films for antistatic application

Yu-Wei Hou, Kang-Yu Liu, Yung-Cheng Chang

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Abstract

Flexible antistatic film in optoelectronic instruments is challenging because of the essential requirement of high optical transmittance and low haze with sheet resistance between 10 5 ∼10 12 ohm/sq. However, electroconductive silver nanowires (AgNWs) is difficult to be applied at such a high sheet resistance due to its one‐dimentional structure. An antistatic film comprising hydrophilic polymer (HP), AgNWs and acrylic resin was demonstrated with a comprehensive study of HP component, regarding the optical property and the morphology.

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What this paper is about

Flexible antistatic film in optoelectronic instruments is challenging because of the essential requirement of high optical transmittance and low haze with sheet resistance between 10 5 ∼10 12 ohm/sq. However, electroconductive silver nanowires (AgNWs) is difficult to be applied at such a high sheet resistance due to its one‐dimentional structure. An antistatic film comprising hydrophilic polymer (HP), AgNWs and acrylic resin was demonstrated with a comprehensive study of HP component, regarding the optical property and the morphology.

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Available abstract

Flexible antistatic film in optoelectronic instruments is challenging because of the essential requirement of high optical transmittance and low haze with sheet resistance between 10 5 ∼10 12 ohm/sq. However, electroconductive silver nanowires (AgNWs) is difficult to be applied at such a high sheet resistance due to its one‐dimentional structure. An antistatic film comprising hydrophilic polymer (HP), AgNWs and acrylic resin was demonstrated with a comprehensive study of HP component, regarding the optical property and the morphology.

Key concepts: Antistatic agent, Sheet resistance, Transmittance, Materials science, Nanowire, Electrical conductor, Composite material, Ohm

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