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Facile chemical routes to mesoporous silver substrates for SERS analysis

机译:易于化学转化为介孔银底物的SERS分析

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摘要

Mesoporous silver nanoparticles were easily synthesized through the bulk reduction of crystalline silver(I) oxide and used for the preparation of highly porous surface-enhanced Raman scattering (SERS)-active substrates. An analogous procedure was successfully performed for the production of mesoporous silver films by chemical reduction of oxidized silver films. The sponge-like silver blocks with high surface area and the in-situ-prepared mesoporous silver films are efficient as both analyte adsorbents and Raman signal enhancement mediators. The efficiency of silver reduction was characterized by X-ray diffraction and X-ray photoelectron spectroscopy. The developed substrates were applied for SERS detection of rhodamine 6G (enhancement factor of about 1–5 × 105) and an anti-ischemic mildronate drug (meldonium; enhancement factor of ≈102) that is known for its ability to increase the endurance performance of athletes.
机译:中孔银纳米粒子很容易通过大量还原结晶的氧化银(I)来合成,并用于制备高度多孔的表面增强拉曼散射(SERS)活性基质。通过化学还原氧化的银膜成功地进行了类似的过程以生产中孔银膜。具有高表面积的海绵状银块和原位制备的中孔银膜可有效用作分析物吸附剂和拉曼信号增强介质。通过X射线衍射和X射线光电子能谱表征了银还原的效率。已开发的底物用于检测若丹明6G(增强因子约为1-5×10 5 )和抗缺血性丙二酸药物(美敦尼;增强因子≈10 2 < / sup>),以提高运动员的耐力表现而闻名。

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