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High energy electron beam stimulated nanowelding of silver nanowire networks encapsulated with graphene for flexible and transparent electrodes

机译:高能电子束激发的纳米银网络与石墨烯包裹的纳米银网络的柔性和透明电极

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摘要

Low-dimensional nanostructures and their complementary hybridization techniques are in the vanguard of technological advances for applications in transparent and flexible nanoelectronics due to the intriguing electrical properties related to their atomic structure. In this study, we demonstrated that welding of Ag nanowires (NWs) encapsulated in graphene was stimulated by flux-optimized, high-energy electron beam irradiation (HEBI) under ambient conditions. This methodology can inhibit the oxidation of Ag NWs which is induced by the inevitably generated reactive ozone as well as improve of their electrical conductivity. We have systematically explored the effects of HEBI on Ag NWs and graphene. The optimized flux for HEBI welding of the Ag NWs with graphene was 150 kGy, which decreased the sheet resistance of the graphene/Ag NWs to 12 Ohm/sq. Following encapsulation with graphene, the initial chemical states of the Ag NWs were well-preserved after flux-tuned HEBI, whereas graphene underwent local HEBI-induced defect generation near the junction area. We further employed resonant Raman spectroscopy to follow the structural evolution of the sacrificial graphene in the hybrid film after HEBI. Notably, the sheet resistance of the welded Ag NWs encapsulated with graphene after HEBI was well-maintained even after 85 days.
机译:低维纳米结构及其互补的杂交技术由于其原子结构的吸引人的电学特性,在透明和柔性纳米电子学中的应用处于技术进步的前沿。在这项研究中,我们证明了在环境条件下,通量优化的高能电子束辐照(HEBI)刺激了封装在石墨烯中的Ag纳米线(NWs)的焊接。这种方法可以抑制不可避免地产生的反应性臭氧引起的Ag NWs的氧化,并提高其电导率。我们已经系统地探索了HEBI对Ag NWs和石墨烯的影响。用石墨烯进行HEBI焊接的Ag NWs的最佳焊剂为150 kGy,这将石墨烯/ Ag NWs的薄层电阻降低到12 Ohm / sq。用石墨烯封装后,Ag NWs的初始化学状态在通量调整HEBI之后得到了很好的保留,而石墨烯在结区域附近经历了局部HEBI诱导的缺陷生成。我们进一步采用共振拉曼光谱法来追踪HEBI之后杂化膜中牺牲石墨烯的结构演变。值得注意的是,即使在85天后,HEBI后用石墨烯封装的焊接Ag NW的薄层电阻也可以很好地保持。

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