用于制作高对比度潜伏指纹的发光纳米材料。

IF 2.9 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
G Swati, Savvi Mishra
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引用次数: 0

摘要

指纹图案(或表皮纹)是迄今为止最可靠的个人身份识别技术之一。指纹图案沉积在任何固体表面都是由于人体的渗透或渗出过程。汗腺分泌的体液含有水分、天然油脂和蛋白质。由于潜伏指纹图案不易辨认,因此要从犯罪现场采集指纹,并对其进行进一步的物理或化学处理。使用传统的黑白粉末提取指纹存在严重的缺陷,包括灵敏度低、基质的背景干扰大、涉及有毒物质和稳定性差。为了克服上述问题,特别是在有色和透明基底上,发光材料已成为快速显现高对比度潜伏指纹的潜在媒介。这篇综述文章介绍了用于显现潜伏指纹的两种发光纳米材料(向上和向下转换)和持久性纳米磷酸盐的最新进展。文章特别强调了被称为持久性纳米磷酸盐的特殊发光材料,这种材料不需要持续的激发,因此可以完全消除背景噪声。综述还涉及收集指纹的不同方法,如粉末撒粉、氰基丙烯酸酯熏蒸、茚三酮熏蒸和真空金属沉积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Luminescent nanomaterials for developing high-contrast latent fingerprints.

Fingerprint patterns (or epidermal ridges) are by far one of the most reliable techniques for individual identification. Fingerprint patterns get deposited on all kinds of solid surfaces due to human transudation or exudation process. Bodily fluids through sweat glands contain moisture, natural oils and proteins. Since latent fingerprint patterns are not readily recognizable they are collected from a crime scene and are further processed physically or chemically. Fingerprints obtained using conventional black and white powders face severe drawbacks including low sensitivity, high background interference from the substrates, involvement of toxic materials, and poor stability. To overcome the above-listed issues, especially for coloured and transparent substrates, luminescent materials have emerged as potential agents for rapid visualization of high-contrast latent fingerprints. This review covers the recent advancements in luminescent nanomaterials of both kinds (up and down conversion) and persistent nanophosphors for developing latent fingerprints. Special emphasis has been given to an unusual class of luminescent materials known as persistent nanophosphors, which do not require a constant excitation, thereby completely eradicating background noise. The review also covers different approaches to gathering fingerprints such as powder dusting, cyanoacrylate fuming, ninhydrin fuming and vacuum metal deposition.

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来源期刊
Nanotechnology
Nanotechnology 工程技术-材料科学:综合
CiteScore
7.10
自引率
5.70%
发文量
820
审稿时长
2.5 months
期刊介绍: The journal aims to publish papers at the forefront of nanoscale science and technology and especially those of an interdisciplinary nature. Here, nanotechnology is taken to include the ability to individually address, control, and modify structures, materials and devices with nanometre precision, and the synthesis of such structures into systems of micro- and macroscopic dimensions such as MEMS based devices. It encompasses the understanding of the fundamental physics, chemistry, biology and technology of nanometre-scale objects and how such objects can be used in the areas of computation, sensors, nanostructured materials and nano-biotechnology.
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