TY - JOUR
T1 - Ultra-Highly Cross-Aligned AgNWs Network by a Facile Liquid-Bridge Assisted Couette-Flow Solution Process
T2 - Toward Mass-Producing High-Performance Flexible Transparent Electrodes
AU - Li, Xiaoxun
AU - Meng, Lili
AU - Zhang, Min
AU - Zhang, Kejie
AU - Jiang, Lei
AU - Liu, Huan
N1 - Publisher Copyright:
© 2023 Chinese Chemical Society.
PY - 2023/12
Y1 - 2023/12
N2 - Cross-aligned silver nanowires (CA-AgNWs), a unique network widely used in flexible transparent electrodes (FTEs), have been well developed using various solution processes. However, these approaches suffer from limitations of both the large alignment deviation and solution waste, especially in large-area fabrication, which deteriorates the performance of FTEs. Herein, we developed a facile liquid-bridge assisted Couette-flow solution shearing approach, which enables aligning AgNWs into a highly ordered horizontal array over a large area (120 cm2). Particularly, the alignment deviation, evaluated by the statistic, full width at half-maximum, is rather small with a value of ca. 12.6, several times lower than those made by other solution processes. The fibrous liquid-bridge is responsible for transferring liquid steadily onto the substrate, during which process AgNWs are aligned roughly by the solution shearing. It is worth noting that the enhanced shearing force (SF) by Couette-flow allows for further alignment. Consequently, the ultra-highly CA-AgNWs network was prepared, leading to a high-performance FTE with high conductivity (7 Ω sq−1), high transparency (93%), long lifetime (over 180 days), good adhesion-stability (200 times tape test), and good flexibility. Moreover, the strategy is applicable for mass-production, benefiting the practical applications of high-performance optoelectronic devices.
AB - Cross-aligned silver nanowires (CA-AgNWs), a unique network widely used in flexible transparent electrodes (FTEs), have been well developed using various solution processes. However, these approaches suffer from limitations of both the large alignment deviation and solution waste, especially in large-area fabrication, which deteriorates the performance of FTEs. Herein, we developed a facile liquid-bridge assisted Couette-flow solution shearing approach, which enables aligning AgNWs into a highly ordered horizontal array over a large area (120 cm2). Particularly, the alignment deviation, evaluated by the statistic, full width at half-maximum, is rather small with a value of ca. 12.6, several times lower than those made by other solution processes. The fibrous liquid-bridge is responsible for transferring liquid steadily onto the substrate, during which process AgNWs are aligned roughly by the solution shearing. It is worth noting that the enhanced shearing force (SF) by Couette-flow allows for further alignment. Consequently, the ultra-highly CA-AgNWs network was prepared, leading to a high-performance FTE with high conductivity (7 Ω sq−1), high transparency (93%), long lifetime (over 180 days), good adhesion-stability (200 times tape test), and good flexibility. Moreover, the strategy is applicable for mass-production, benefiting the practical applications of high-performance optoelectronic devices.
KW - AgNWs
KW - Couette-flow
KW - cross-aligned
KW - flexible transparent electrode
KW - solution shearing
UR - https://www.scopus.com/pages/publications/85179048549
U2 - 10.31635/ccschem.023.202302694
DO - 10.31635/ccschem.023.202302694
M3 - 文章
AN - SCOPUS:85179048549
SN - 2096-5745
VL - 5
SP - 2855
EP - 2865
JO - CCS Chemistry
JF - CCS Chemistry
IS - 12
ER -