对沉积在非导电表面上的潜在指纹进行电致变色可视化处理

IF 3.6 3区 化学 Q2 CHEMISTRY, ANALYTICAL Analyst Pub Date : 2024-06-11 DOI:10.1039/D4AN00632A
Yawen Kong, Xiuge Shi, Meng Wang, Weiyi Chen, Lu Li, Lan Zhang and Debao Xiao
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引用次数: 0

摘要

在不锈钢等导电表面上已经实现了潜伏指痕的电致变色可视化。然而,在玻璃等非导电表面上通过电致变色来增强指痕的效果尚未见报道。考虑到基底的非导电性,我们在带有指痕的表面引入了一层金,其中金被用作阴极来组装用于可视化的电致变色装置。在指痕区域获得的导电层中,金纳米粒子之间的接触应受到指痕内高度差的影响,从而导致导电率的差异,进而引起电致变色装置的着色差异。研究表明,1,1'-二苄基-4,4'-联吡啶二氯化物可用作电致变色发色团,用于沉积在非导电表面的潜伏指痕的可视化,并可获得主要和次要特征信息。电致变色可视化技术解决了非导电表面上潜伏指痕的电致变色增强问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Electrochromic visualization of latent fingermarks deposited on nonconductive surfaces

Electrochromic visualization of latent fingermarks has already been achieved on conducting surfaces such as stainless steel. However, their enhancement on non-conducting surfaces such as glass via electrochromism has not been reported. Considering the non-conductive nature of substrates, a layer of gold was introduced to the fingermark-bearing surfaces, in which gold was used as the cathodes to assemble electrochromic devices for visualization. The contact between gold nanoparticles of the as-obtained conducting layer in the fingermark region should be affected by the height difference within the fingermark, leading to conductivity differences, which give rise to coloration differences in electrochromic devices. It is demonstrated that 1,1′-dibenzyl-4,4′-bipyridinium dichloride can be used as the electrochromic chromophore for the visualization of latent fingermarks deposited on nonconducting surfaces, and the primary and secondary characteristic information can be obtained. The electrochromic visualization herein solves the problem of electrochromically enhancing latent fingermarks on non-conducting surfaces.

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来源期刊
Analyst
Analyst 化学-分析化学
CiteScore
7.80
自引率
4.80%
发文量
636
审稿时长
1.9 months
期刊介绍: The home of premier fundamental discoveries, inventions and applications in the analytical and bioanalytical sciences
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