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Dual-emitting quantum dot nanohybrid for imaging of latent fingerprints: simultaneous identification of individuals and traffic light-type visualization of TNT

机译:用于潜在指纹成像的双发射量子点纳米混合体:同时识别个人和TNT的交通信号灯可视化

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摘要

Fingerprints are a unique characteristic of an individual. Recently, it has been realized that fingerprints carry more information about individuals than just their identity, for example, they may identify potential addicts and terrorists carrying explosives. Therefore, the development of imaging moieties capable of both fingerprint staining and drug/explosive visualization is of significant importance for forensic chemistry. Here we developed a nanohybrid comprising green- and red-emitting QDs for simultaneous fingerprint imaging and TNT visualization in fingerprints. The red-emitting Cu-doped ZnCdS (Cu–ZnCdS) QDs were embedded into silica nanoparticles and the green-emitting ZnCdS QDs were anchored onto the surface of the silica nanoparticles and further functionalized with polyallylamine (PAA). Both components of the nanohybrid, i.e., the PAA-functionalized green QDs and red QD-doped silica nanoparticles, could be explored for fingerprint imaging. Due to the formation of a Meisenheimer complex between TNT and PAA, the green-emitting QDs could be quenched by TNT, meanwhile the red-emitting QDs were inert. Therefore, the nanohybrid exhibited a traffic light-type fluorescence color change (green-yellow-red) to TNT concentration in the range of 40–400 μM. This method is promising for potential applications in security-screening needs in public areas such as airports and train stations.
机译:指纹是个人的独特特征。最近,人们已经认识到,指纹携带的不仅仅是个人信息,还包含有关个人的更多信息,例如,指纹可以识别携带爆炸物的潜在上瘾者和恐怖分子。因此,能够进行指纹染色和药物/爆炸性显像的成像部分的开发对于法医学非常重要。在这里,我们开发了一种包含绿色和红色发光QD的纳米杂交体,用于同时进行指纹成像和TNT可视化。将红色发光的掺杂Cu的ZnCdS(Cu-ZnCdS)量子点嵌入二氧化硅纳米颗粒中,绿色发光的ZnCdS量子点固定在二氧化硅纳米颗粒的表面上,并进一步用聚烯丙基胺(PAA)进行功能化。可以探索纳米杂化物的两个成分,即PAA官能化的绿色QD和掺杂红色QD的二氧化硅纳米粒子,以用于指纹成像。由于在TNT和PAA之间形成了一个Meisenheimer配合物,因此可以用TNT猝灭发绿光的量子点,而发红光的量子点是惰性的。因此,纳米混杂物在40-400μM的范围内表现出交通灯类型的荧光颜色变化(绿黄色红色)至TNT浓度。这种方法有望在机场和火车站等公共场所的安全筛选需求中潜在应用。

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