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NIR-induced highly sensitive detection of latent finger-marks by NaYF4:YbEr upconversion nanoparticles in a dry powder state

机译:NIR诱导的NaYF4:YbEr上转换纳米粒子在干粉状态下对潜在指印的高灵敏度检测

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摘要

The most commonly found fingermarks at crime scenes are latent and, thus, an efficient method for detecting latent fingermarks is very important. However, traditional developing techniques have drawbacks such as low detection sensitivity, high background interference, complicated operation, and high toxicity. To tackle this challenge, we employed fluorescent NaYF4:Yb,Er upconversion nanoparticles (UCNPs), which can fluoresce visible light when excited by 980 nm human-safe near-infrared light, to stain the latent fingermarks on various substrate surfaces. The UCNPs were successfully used as a novel fluorescent label for the detection of latent fingermarks with high sensitivity, low background, high efficiency, and low toxicity on various substrates including non-infiltrating materials (glass, marble, aluminum alloy sheets, stainless steel sheets, aluminum foils, and plastic cards), semi-infiltrating materials (floor leathers, ceramic tiles, wood floor, and painted wood), and infiltrating materials such as various types of papers. This work shows that UCNPs are a versatile fluorescent label for the facile detection of fingermarks on virtually any material, enabling their practical applications in forensic sciences.
机译:在犯罪现场最常见的指纹是潜在的,因此,一种有效的检测潜在指纹的方法非常重要。然而,传统的显影技术具有诸如检测灵敏度低,背景干扰高,操作复杂和毒性高的缺点。为了解决这一挑战,我们采用了荧光NaYF4:Yb,Er上转换纳米颗粒(UCNPs),当被980 nm人类安全的近红外光激发时,它可以发出可见光,以染色各种基材表面上的潜在指印。 UCNP已成功用作新型荧光标记,可在包括非渗透性材料(玻璃,大理石,铝合金板,不锈钢板,铝箔和塑料卡),半渗透性材料(地板革,瓷砖,木地板和彩绘木料)以及渗透性材料(例如各种类型的纸)。这项工作表明,UCNPs是一种通用的荧光标记,可轻松检测几乎所有材料上的指印,使其在法医学中具有实际应用价值。

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