首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Core-shell nanostructures and nanocomposites of Ag@TiO2: effect of capping agent and shell thickness on the optical properties
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Core-shell nanostructures and nanocomposites of Ag@TiO2: effect of capping agent and shell thickness on the optical properties

机译:Ag@TiO2核壳纳米结构和纳米复合材料:封端剂和壳厚度对光学性能的影响

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Two different shell-forming reagents viz. titanium isopropoxide and titanium hydroxyacylate, have been employed to obtain core-shell nanostructures of Ag@TiO2. However, nanocomposites were formed when the shell-forming agent, titanium isopropoxide, was added before breaking the micelles. Titanium hydroxyacylate has been used for the first time as a shell-forming agent which resulted in uniform core-shell structures of Ag@TiO2 with core diameter ranging from 10 to 40 nm and a shell thickness of 10-50 nm. The low rate of hydrolysis of titanium hydroxyacylate than titanium isopropoxide (used in other methods) appears to be responsible for the uniform shell thickness. The presence of capping agent (2-mercaptoethanol) disrupts the formation of a uniform shell structure of Ag@TiO2. HRTEM, IR, and XPS studies of Ag@TiO2 synthesized using capping agent show the formation of Ag2S coated with an amorphous layer of TiO2. A red shift of 25 and 10 nm was observed in the surface plasmon band of silver for Ag@ TiO2 core-shell structures (compared with that of silver nanoparticles) synthesized using titanium hydroxyacylate and titanium isopropoxide, respectively. The presence of capping agent (2-mercaptoethanol) masks the surface plasmon peak. Photoluminescence studies show an increase in the emission intensity for the core-shell structures when compared to that of TiO2 nanoparticles.
机译:两种不同的造壳试剂,即异丙醇钛和羟基酰化钛,已被用于获得Ag@TiO2的核壳纳米结构。然而,当在破坏胶束之前加入成壳剂异丙醇钛时,就会形成纳米复合材料。羟基酰化钛首次被用作成壳剂,使Ag@TiO2的核壳结构均匀,核直径范围为10-40 nm,壳厚度为10-50 nm。与异丙醇钛(用于其他方法)相比,羟基酰化钛的水解速率较低,这似乎是壳层厚度均匀的原因。封端剂(2-巯基乙醇)的存在破坏了Ag@TiO2的均匀壳结构的形成。使用封端剂合成的Ag@TiO2的 HRTEM、IR 和 XPS 研究表明,在无定形层 TiO2 上形成了 Ag2S。使用羟基酰化钛和异丙醇钛合成的TiO2核壳结构(与银纳米颗粒相比)分别在Ag@银的表面等离子体带中观察到25和10 nm的红移。封端剂(2-巯基乙醇)的存在掩盖了表面等离子体峰。光致发光研究表明,与TiO2纳米颗粒相比,核壳结构的发射强度有所增加。

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