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Seeds screening aqueous synthesis, multiphase interfacial separation and in situ optical characterization of invisible ultrathin silver nanowires

机译:种子筛选水合成、多相界面分离和原位光学描述的无形的超薄银纳米线

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摘要

We report a multi-step synthetic method to obtain ultrathin silver nanowires (Ag NWs) from an aqueous solution with a approximate to 17 nm diameter average, and where some of them decreased down to 9 nm. Carefully designed seed screening processes including LED irradiation at high temperature for a short time, and then continuous H2O2 etching, and relative growth mechanisms of high-yield five-twinned pentagonal seeds and ultrathin Ag NWs in aqueous environment are detailed. Then, a rapid and simple multiphase interfacial assembly method particularly suitable for the separation of ultrathin Ag NWs from various by-products was demonstrated with a clear mechanism explanation. Next, a unique optical interaction between light and individual AG NWs, as well as feature structures in the AG NWs film, was investigated by a micro-domain optical confocal microscope measurement in situ together with a theoretical explanation using modal transmission theory. That revealed that the haze problem of AG NWs films was not only arising from the interaction between light and individual or crossed Ag NWs but was also greatly dependent on a weak coupling effect of leaky modes supported by adjacent Ag NWs with large distances which had not been considered before. We then provided direct experimental evidence and concluded how to obtain haze-free films with 100 transparency in the whole visible range based on ultrathin Ag NWs. This breakthrough in diameter confinement and purification of Ag NWs is a highly expected step to overcome the well-focused light diffusion and absorption problems of Ag NWs-based devices applied in various fields such as flexible electronics, high-clarity displays, visible transparent heaters, photovoltaics and various optoelectronic technologies.
机译:我们报告一个多步合成方法获得从一个超薄的银纳米线(Ag) NWs)水溶液与近似17海里平均直径,其中的一些下降到9 nm。筛选过程包括LED照射高温一段时间,然后连续的过氧化氢腐蚀,和相对增长高收益机制five-twinned五角种子和超薄Ag NWs在水环境中是详细的。界面组装方法特别适合超薄Ag NWs分离的各种副产品与一个明确的证明了机制的解释。光和个人的相互作用AG NWs,以及功能结构在影片AG)所在地,研究了微领域光学吗共焦显微镜原位测量使用模态理论解释传播理论。AG NWs电影问题不仅引起的光和个人或之间的互动交叉Ag NWs但也极大地依赖漏水的弱耦合效应模式支持通过相邻Ag NWs大距离没有考虑过。直接的实验证据,结论如何获得haze-free电影的透明度为100%整个基于超薄Ag)的可见范围拥有核武器的国家。和净化Ag NWs是一个高度的预期步骤来克服备受光扩散和吸收Ag NWs-based设备的问题应用在各个领域,如灵活电子产品、高净度显示器,清晰可见透明的加热器,光电和各种光电子技术。

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