2022
DOI: 10.1021/acs.nanolett.1c04185
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Biomimetic Hierarchically Silver Nanowire Interwoven MXene Mesh for Flexible Transparent Electrodes and Invisible Camouflage Electronics

Abstract: Flexible transparent electrodes demand high transparency, low sheet resistance, as well as excellent mechanical flexibility simultaneously, however they still remain to be a great challenge due to“trade-off” effect. Herein, inspired by a hollow interconnected leaf vein, we developed robust transparent conductive mesh with biomimetic interwoven structure via hierarchically self-assembles silver nanowires interwoven metal carbide/nitride (MXene) sheets along directional microfibers. Strong interfacial interactio… Show more

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Cited by 66 publications
(35 citation statements)
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“…One of the most widely adopted strategies to realize transparent electrodes is by incorporating both MXene and AgNWs. 76,79,80 Liu et al utilized a cost-effective solution spray technique to fabricate AgNW/MXene transparent conducting electrodes with high conductivity (a sheet resistance of 15.9 Ω sq −1 ) and high transmittance (92.5%). 77 Conductive MXene flakes fill the insulating voids of the AgNW network (Fig.…”
Section: Transparent Mxene Electrodementioning
confidence: 99%
“…One of the most widely adopted strategies to realize transparent electrodes is by incorporating both MXene and AgNWs. 76,79,80 Liu et al utilized a cost-effective solution spray technique to fabricate AgNW/MXene transparent conducting electrodes with high conductivity (a sheet resistance of 15.9 Ω sq −1 ) and high transmittance (92.5%). 77 Conductive MXene flakes fill the insulating voids of the AgNW network (Fig.…”
Section: Transparent Mxene Electrodementioning
confidence: 99%
“…[360] The silver nanowires are interwoven with MXene for meshes, which show invisible camouflage applications. [361] The metal-organic framework serves as a sacrificing template for regulating the formation of MXene/chalcogenides heterostructure. [362] The MXene/rGO/polystyrene sphere-based sponges show great sensitivity in pressure sensors.…”
Section: Design Of Macrostructures For Functional Componentsmentioning
confidence: 99%
“…Today, the application scope of smart textiles has been further expanded to electronics-embedded clothing, sports and leisure clothing, [70,71] environmental pollution clothing, [72,73] and wearable optoelectronic clothing. [74][75][76] Therefore, advanced functions need to be added to the fiber, including heating or cooling, [60] thermal protective, waterproof, [77][78][79] or wind resistance. [80] Among the smart functions of textiles, the new wearable technology based on the principle of light heat conversion effect is considered as the development direction of smart thermal management fibers and textiles in the future.…”
Section: Passive Photothermal Effectmentioning
confidence: 99%