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首页> 外文期刊>Chemical Physics Letters >Synthesis of gold nanoparticles, their interfacial self-assembly, and plasma welding: A solution-processable strategy to interdigital electrodes
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Synthesis of gold nanoparticles, their interfacial self-assembly, and plasma welding: A solution-processable strategy to interdigital electrodes

机译:金纳米颗粒,界面自组装和等离子焊接的合成:对争端电极的解决方案

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This study reports a solution-processable strategy to interdigital electrodes (IDEs), via integrating synthesis of gold nanoparticles (AuNPs), interfacial self-assembly, and plasma welding. Particularly, we found that the usual plasma cleaning process can effectively weld AuNPs, making the self-assembled, patterned AuNP film form a highly interconnected, porous IDEs composed of hyperboloid ligaments. With high conductivity and abundant active sites, the IDEs can serve as glucose sensor (detection limit, 493 mu M) and also electrodes in perovskite photodetector (responsivity, 1.60 mA/W; raise/decay time, 0.544/0.866 s). These results offer a new pathway to broaden the applications of diverse self-assembled nanofilms.
机译:本研究通过整合金纳米颗粒(AUNP),界面自组装和等离子体焊接来报告对偶通电极(IDES)的解决方案可处理的策略。 特别是,我们发现通常的等离子体清洁过程可以有效地焊接AUNP,使自组装,图案化的AUNP膜形成高度互连的多孔IDE,由双曲线韧带组成。 具有高导电性和丰富的活性位点,IDE可以用作葡萄糖传感器(检测限,493μm)和钙钛矿光电探测器(响应性,1.60mA / W;升高/衰减时间,0.544 / 0.866)中的电极。 这些结果提供了一种新的途径,可以拓宽各种自组装纳米岩的应用。

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