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A toxicology-informed, safer by design approach for the fabrication of transparent electrodes based on silver nanowires

机译:通过基于银纳米线制备透明电极的设计方法的毒理学通知,更安全

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摘要

Fabrication of silver nanowires (AgNWs) with fine and independent control of both the diameter (from 30 to 120 nm) and length (from 5 to 120 mu m) by concomitant addition of co-nucleants and temperature control is demonstrated, and used for the preparation of size standards. Percolating random networks were fabricated using these standards and their optoelectronic properties were measured and compared with regard to the nanowire dimensions. The transparent electrodes appear suitable for various applications and exhibit excellent performances (e.g. 16 ohm sq(-1) at 93% transparency), with haze values varying from 1.6 to 26.2%. Besides, in vitro toxicological studies carried out on murine macrophages with the same size standards revealed that AgNWs are weakly toxic (no toxicity observed below 50 mu g mL(-1) Ag), in particular compared to other silver nanoparticles. Short AgNWs (4 mu m) appeared to be slightly more toxic than longer AgNWs (10 and 20 mu m). Conversely, long AgNWs (20 mu m) induced a more prolonged pro-inflammatory response in murine macrophages. These results contribute, in a safer by design approach, to promoting the use of short AgNWs. The global knowledge dealing with the combination of nanowire dimensions associated with optoelectronic performances and related toxicity should encourage the rational use of AgNWs, and guide the choice of the most adequate AgNW dimensions in an integrated approach.
机译:通过伴随加入共进核酸和温度控制,对含有精细和独立控制的银纳米线(AgNWS)的制造具有精细和独立控制,并用于添加共核酸和温度控制,并用于制备尺寸标准。使用这些标准制造渗透随机网络,并将其光电性能进行测量并与纳米线尺寸进行比较。透明电极出现适用于各种应用,并且表现出优异的性能(例如,16欧姆Sq(-1)的透明度,雾度值从1.6%到26.2%。此外,在具有相同尺寸标准的鼠巨噬细胞上进行的体外毒理学研究表明,AgNws弱毒性(在50μgmm(-1)Ag以下观察到的毒性),特别是与其他银纳米颗粒相比。短Agnws(4 mu m)似乎略微略微略高于较长的agnws(10和20 mu m)。相反,长期agnws(20 mu m)在鼠巨噬细胞中诱导更长时间的促炎反应。这些结果通过设计方法更安全地贡献,促进使用短AGNW。处理与光电性能相关的纳米线尺寸组合的全球知识应鼓励合理使用AGNW,并指导综合方法中最适当的AGNW尺寸的选择。

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