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Novel Hybrid Conductor of Irregularly Patterned Graphene Mesh and Silver Nanowire Networks

机译:不规则图案化石墨烯网和银纳米线网络的新型混合导体

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摘要

We prepared the hybrid conductor of the Ag nanowire (NW) network and irregularly patterned graphene (GP) mesh with enhanced optical transmittance (~98.5%) and mechano-electric stability (Δ : ~42.4% at 200,000 (200k) cycles) under 6.7% strain. Irregularly patterned GP meshes were prepared with a bottom-side etching method using chemical etchant (HNO ). The GP mesh pattern was judiciously and easily tuned by the regulation of treatment time (0–180 min) and concentration (0–20 M) of chemical etchants. As-formed hybrid conductor of Ag NW and GP mesh exhibit enhanced/controllable electrical-optical properties and mechano-electric stabilities; hybrid conductor exhibits enhanced optical transmittance ( = 98.5%) and improved conductivity (Δ : 22%) compared with that of a conventional hybrid conductor at similar . It is also noteworthy that our hybrid conductor shows far superior mechano-electric stability (Δ : ~42.4% at 200k cycles; : ~98.5%) to that of controls (Ag NW (Δ : ~293% at 200k cycles), Ag NW-pristine GP hybrid (Δ : ~121% at 200k cycles)) ascribed to our unique hybrid structure.
机译:我们制备了Ag纳米线(NW)网络和不规则图案的石墨烯(GP)网格的混合导体,其在6.7以下具有增强的透光率(〜98.5%)和机电稳定性(在200,000(200k)个循环中,Δ:〜42.4%) %应变。使用化学蚀刻剂(HNO)通过底面蚀刻方法制备不规则图案的GP网格。通过调整处理时间(0-180分钟)和化学蚀刻剂的浓度(0-20 M),可以明智而轻松地调整GP网格图案。 Ag NW和GP网格的成形混合导体表现出增强/可控的电光特性和机电稳定性;与传统混合导体相比,混合导体表现出更高的透光率(= 98.5%)和改善的电导率(Δ:22%)。还值得注意的是,我们的混合导体表现出远优于对照(Ag NW(ΔN N在200k周期为Δ293%),在200k周时的Δ约为293%)的机械电稳定性(Δ:在200k周时为Δ〜42.4%;约98.5%)。 -原始GP杂种(在20万次循环中,△:〜121%)归因于我们独特的杂种结构。

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