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Ultrahigh Density Array of Vertically Aligned Small-molecular Organic Nanowires on Arbitrary Substrates
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Coordination-Bonded Ag NWs Micromesh-Based Transparent Electrodes for Electro- and Thermo- Dual Responsive Chromatic
Qing Sui1, Xiaodan Guo1, Zhiqiang Liu1
1Key Laboratory for Special Functional Materials of Ministry of Education, National & Local Joint Engineering Research Center for High-efficiency Display and Lighting Technology, and School of Nanoscience and Materials Engineering, Henan University, Kaifeng 475004, China.
None:
Metal nanowire-based transparent electrodes have emerged as promising alternatives to conventional indium tin oxide (ITO) due to their excellent electrical conductivity and mechanical flexibility. However, weak adhesion between metal nanowires and conventional substrates results in poor mechanical stability. Moreover, random silver nanowire (Ag NW) nanostructures in conventional electrodes leads to high junction resistance and light scattering, reducing conductivity and transparency. Herein, we develop highly stable and flexible transparent electrodes by embedding micromesh-structured Ag NWs in hydroxyl-rich cellulose. Benefiting from strong coordination bonding between the Ag NWs and hydroxyethyl cellulose (HEC) and the embedded micromesh structure, the electrode displays superior photoelectric performance (5 Ω/sq at 83.5% transmittance) and robust mechanical stability (bending, twisting, folding, and peeling off). Furthermore, we assembled an electro- and thermo- dual responsive chromatic device, enabling rapid heat generation and multicolor switching. We believe that our work provides an innovative approach to fabricating high-performance electrodes for optoelectronic devices.
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