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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >New design of highly sensitive AIE based fluorescent imidazole derivatives: Probing of sweat pores and anti-counterfeiting applications
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New design of highly sensitive AIE based fluorescent imidazole derivatives: Probing of sweat pores and anti-counterfeiting applications

机译:高敏感性荧光咪唑衍生物的新设计:汗毛孔探测及防伪应用

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A novel aggregation induced emission based 2-(1-(3, 5-bis(trifluoromethyl)phenyl)-4,5-diphenyl-1H-imidazol-2-yl) phenol (4) (IMD) fluorescent tags (FTs) was designed by simple acid catalyzed five-member N-heterocyclic ring forming reaction process. Powder X-ray diffraction results showed mechanofluorochromic properties of IMD FTs are easily reversible under external force due to the decrease in crystallinity. These IMD FTs also exhibits strong cyan-blue luminescence in solid state with high quantum efficiency. Detailed investigation of latent fingerprints (LFPs) showed permanent, immutable and unique pores that are distributed on the ridges. The visualization of such sweat pores opens new avenue in the field of forensic science. Hence, the prepared IMD FTs exhibit excellent Lipophicity (LP) properties, which endorse its possible applications for the visualization of sweat pores present in the LFPs. The LFPs visualized by IMD FTs exhibit excellent efficiency, sensitivity, selectivity, low background hindrance and less toxicity. The obtained result evident that the prepared FT and followed technique opens possible applications for the visualization of LFPs on various porous/semi-porous/nonporous surfaces under UV 365 nm light.
机译:一种新的聚集诱导的基于2-(1-(3,5-双(三氟甲基)苯基)-4,5-二苯基-1H-咪唑-2-基)酚(4)(IMD)荧光标签(FTS)的基于2-(1-(3,5-双(三合一(3,5-双(三氟甲基)苯基)-4,5-二苯基-1H-咪唑-2-基)由简单的酸催化的五构件N-杂环环形成反应过程。由于结晶度的降低,粉末X射线衍射结果显示IMD FTS的机械荧光变性特性在外力下容易可逆。这些IMD FTS在具有高量子效率的固态中也表现出强烈的青色发光。详细调查潜在指纹(LFP)显示在脊上分布的永久性,不变和独特的孔隙。这种汗毛孔的可视化在法医科学领域开辟了新的大道。因此,制备的IMD FTS表现出优异的脂肪性(LP)性质,其支持其可能的应用用于LFP中存在的汗液孔的可视化。通过IMD FTS可视化的LFP表现出优异的效率,灵敏度,选择性,低背景障碍和毒性较小。所得的结果明显:制备的FT和遵循的技术为在UV 365nm光下的各种多孔/半多孔/无孔表面上可视化LFP的可能应用。

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