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Benzotriazole-Functionalized Ionic Liquid and Superwettability-Assisted Transfer Enable Air-Stable, Large-Area Copper Nanowires-Based Flexible Transparent Electrodes.


ABSTRACT: Copper nanowires (CuNWs) are promising for flexible transparent electrodes but suffer from lack of effective strategies to inhibit the oxidation-induced conductivity degradation, especially during large-area electrode preparation. Herein, a benzotriazole-functionalized ionic liquid ([BTAMMIM]TFSI) is introduced as an antioxidant layer to protect the CuNWs networks. Remarkably, the sheet resistance of the protected electrodes increases by only 0.54% compared to bare CuNWs after 60-day air exposure. Density functional theory (DFT) calculations and experiments reveal that the benzotriazole-functionalized cations and [TFSI] anions synergistically coordinate with copper, enabling exceptional oxidation resistance. By integrating with superwettability-assisted interfacial transfer strategy, large-area CuNWs@[BTAMMIM]TFSI composite electrodes (40 × 25 cm2) are fabricated with 37.2 Ω sq-1 sheet resistance and 88.2% transmittance (550 nm). The electrodes maintain performance under acidic/alkaline conditions (pH 3/13) and high humidity (85% RH) at 85 °C. A demonstrated flexible smart window exhibits high transmittance modulation (6.1%-68.2%), fast response (< 0.2 s) and long-term stability, highlighting their potential in flexible optoelectronics.

SUBMITTER: Hou B 

PROVIDER: S-EPMC12822452 | biostudies-literature | 2026 Jan

REPOSITORIES: biostudies-literature

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Benzotriazole-Functionalized Ionic Liquid and Superwettability-Assisted Transfer Enable Air-Stable, Large-Area Copper Nanowires-Based Flexible Transparent Electrodes.

Hou Bin B   Wu Kaiyan K   Deng Yuying Y   Wang Shuo S   Wang Wei W   Wang Hongqin H   Ding Dong D   Ma Chuao C   Fan Honglei H   Liu Hongliang H   Jiang Lei L  

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 20251103 4


Copper nanowires (CuNWs) are promising for flexible transparent electrodes but suffer from lack of effective strategies to inhibit the oxidation-induced conductivity degradation, especially during large-area electrode preparation. Herein, a benzotriazole-functionalized ionic liquid ([BTAMMIM]TFSI) is introduced as an antioxidant layer to protect the CuNWs networks. Remarkably, the sheet resistance of the protected electrodes increases by only 0.54% compared to bare CuNWs after 60-day air exposur  ...[more]

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