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首页> 外文期刊>Dyes and Pigments >Easy preparation of gold nanostructures supported on a thiolated silica-gel for catalysis and latent fingerprint detection
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Easy preparation of gold nanostructures supported on a thiolated silica-gel for catalysis and latent fingerprint detection

机译:易于制备硫醇化二氧化硅 - 凝胶上的金纳米结构用于催化和潜在指纹检测

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摘要

Herein, we report an extremely simple, fast and controllable method for preparing gold nanoclusters (GNC) and gold nanospheres (GNS) in situ onto a thiol-organofunctionalized silica gel (MPS) for catalysis and detection of latent fingerprints (LFPs). The silica gel surface was suitably modified with thiol groups by a silylation reaction method using 3-(mercaptopropyl)trimethoxysilane (MPTS). Spectroscopic data (UV-visible-NIR and PL) have shown that the as-prepared thiol-modified silica is able to reduce Au3+ ions in situ, producing orange-red light emitting GNCs. For preparing GNS, on the other hand, it was necessary an adsorption step followed by a reduction with NaBH4. Various experimental conditions for the preparation of GNS were studied, such as the gold precursor and reducing agent concentrations and the reaction time. TEM, XRD and UV-visible-NIR analyses showed, respectively, the presence of approximately spherical particles with a face-centered cubic structure and a plasmon resonance band, which is controllable by changing those synthesis parameters. The as-prepared samples have shown high catalytic activity for the reduction of an AZO dye in aqueous solution, being able to decolorize 92% of the dye content within only 40 min. GNS/MPS and bare MPS have also shown enhanced activity for detecting LFPs deposited over porous and non-porous surfaces, including glass, polymer, paper, metal, leather, ceramic and wood. Our method has shown to be a suitable alternative for conventional techniques, it is easier to apply, fast-responsive, reusable, durable and thermally stable.
机译:在此,我们报告了一种极其简单,快速可控的方法,用于将金纳米蛋白(GNC)和金纳米球(GNS)原位制备到硫醇有机官能化硅胶(MPS)上,用于催化和检测潜在指纹(LFP)。通过使用3-(巯基丙基)三甲氧基硅烷(MPTS)通过甲硅烷化反应方法适当地用硫醇基团用硫醇组来改性硅胶表面。光谱数据(UV-Visible-Nir和PL)表明,制备的硫醇改性二氧化硅能够以原位减少Au3 +离子,产生橙红色发光的GNC。另一方面,为了制备GNS,是必要的吸附步骤,然后用NaBH 4减少。研究了制备GNS的各种实验条件,例如金前体和还原剂浓度和反应时间。 TEM,XRD和UV可见NIR分析分别显示出近似球形颗粒,具有面向中心的立方结构和等离子体共振带,其通过改变那些合成参数来控制。制备的样品已经显示出高催化活性,用于减少水溶液中的偶氮染料,能够在40分钟内脱色92%的染料含量。 GNS / MPS和Bare MPS还显示了用于检测沉积在多孔和无孔表面上的LFP的增强活性,包括玻璃,聚合物,纸张,金属,皮革,陶瓷和木材。我们的方法已经显示出用于传统技术的合适替代方案,更容易应用,快速响应,可重复使用,耐用和热稳定。

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