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Highly Stretchable and Free-Standing AgNWs/PDMS Three-Dimensional Structure Transparent Conductive Films for Nanoimprint Lithography
by
Cao, Yuanxun
, Zhang, Xuetao
, Zhao, Xiaohua
, Ma, Dayong
, Yang, Zhiwei
in
Curing
/ Dimethylpolysiloxane
/ Electric properties
/ Flexibility
/ Integrated circuit fabrication
/ Morphology
/ Nanolithography
/ Nanowires
/ Optics
/ Optoelectronic devices
/ Performance evaluation
/ Polydimethylsiloxane
/ Scanning electron microscopy
/ Spin coating
/ Static electricity
/ Substrates
/ Ultraviolet radiation
2026
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Highly Stretchable and Free-Standing AgNWs/PDMS Three-Dimensional Structure Transparent Conductive Films for Nanoimprint Lithography
by
Cao, Yuanxun
, Zhang, Xuetao
, Zhao, Xiaohua
, Ma, Dayong
, Yang, Zhiwei
in
Curing
/ Dimethylpolysiloxane
/ Electric properties
/ Flexibility
/ Integrated circuit fabrication
/ Morphology
/ Nanolithography
/ Nanowires
/ Optics
/ Optoelectronic devices
/ Performance evaluation
/ Polydimethylsiloxane
/ Scanning electron microscopy
/ Spin coating
/ Static electricity
/ Substrates
/ Ultraviolet radiation
2026
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Highly Stretchable and Free-Standing AgNWs/PDMS Three-Dimensional Structure Transparent Conductive Films for Nanoimprint Lithography
by
Cao, Yuanxun
, Zhang, Xuetao
, Zhao, Xiaohua
, Ma, Dayong
, Yang, Zhiwei
in
Curing
/ Dimethylpolysiloxane
/ Electric properties
/ Flexibility
/ Integrated circuit fabrication
/ Morphology
/ Nanolithography
/ Nanowires
/ Optics
/ Optoelectronic devices
/ Performance evaluation
/ Polydimethylsiloxane
/ Scanning electron microscopy
/ Spin coating
/ Static electricity
/ Substrates
/ Ultraviolet radiation
2026
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Highly Stretchable and Free-Standing AgNWs/PDMS Three-Dimensional Structure Transparent Conductive Films for Nanoimprint Lithography
Journal Article
Highly Stretchable and Free-Standing AgNWs/PDMS Three-Dimensional Structure Transparent Conductive Films for Nanoimprint Lithography
2026
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Overview
This article proposes a novel transparent conductive film structure to solve the problem of electrostatic accumulation in traditional nanoimprint lithography processes. This structure is formed by spin-coating a layer of silver nanowire (AgNWs) transparent conductive films on a graphic substrate, followed by coating a layer of polydimethylsiloxane (PDMS) on the surface of the film. After the PDMS is cured, it is peeled off from the substrate to form a free-standing elastic three-dimensional structured surface. These transparent conductive films are not only designed to mitigate static electricity generated during the nanoimprint lithography process, but also have excellent UV transparency, with a 325 nm UV transmittance of up to 90%. At the same time, it exhibits good conductivity with a sheet resistance of 20 Ω/sq. In addition, the films have excellent elasticity and can maintain stable conductivity during repeated stretching, providing a novel solution for flexible optoelectronic devices and nanoimprint technology.
Publisher
MDPI AG
Subject
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