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使用二氧化钛负载银光催化剂的可见光控制葡萄糖氧化

Visible-Light-Controlled Oxidation of Glucose using Titania-Supported Silver Photocatalysts.

作者信息

Da Vià Luigi, Recchi Carlo, Davies Thomas E, Greeves Nicholas, Lopez-Sanchez Jose A

机构信息

Stephenson Institute for Renewable Energy, Chemistry Department University of Liverpool Crown Street L69 7ZD UK.

Chemistry Department University of Liverpool Crown Street L69 7ZD UK.

出版信息

ChemCatChem. 2016 Nov 22;8(22):3475-3483. doi: 10.1002/cctc.201600775. Epub 2016 Oct 13.

Abstract

The visible-light-mediated photo-catalytic selective valorisation of glucose using TiO-supported Ag nanoparticles is shown for the first time. The optimisation of the catalyst composition, substrate-to-catalyst ratio and reaction medium proved that a near total suppression of the mineralisation pathway could be achieved with a selectivity to partial oxidation products and small-chain monosaccharides as high as 98 %. The primary products were determined to be gluconic acid, arabinose, erythrose, glyceraldehyde and formic acid. Under UVA light, the selectivity to organics decreases because of the production of CO from mineralisation. A reaction mechanism is proposed based on an α-scission process combined with the Ruff degradation reaction, which explains the presence of the oxidation products, the smaller carbohydrates and formic acid. X-ray photoelectron spectroscopy, UV/Vis spectroscopy and microscopy studies showed the presence of plasmonic 4 nm particles of silver that were oxidised to silver oxide over the course of the reaction, and recycling studies revealed that this was not detrimental to activity.

摘要

首次展示了使用二氧化钛负载的银纳米颗粒对葡萄糖进行可见光介导的光催化选择性增值。催化剂组成、底物与催化剂比例以及反应介质的优化证明,通过对部分氧化产物和小链单糖高达98%的选择性,可以几乎完全抑制矿化途径。确定主要产物为葡萄糖酸、阿拉伯糖、赤藓糖、甘油醛和甲酸。在紫外光A下,由于矿化产生一氧化碳,对有机物的选择性降低。基于α-断裂过程结合鲁夫降解反应提出了一种反应机理,该机理解释了氧化产物、较小碳水化合物和甲酸的存在。X射线光电子能谱、紫外/可见光谱和显微镜研究表明,存在4纳米的等离子体银颗粒,在反应过程中被氧化成氧化银,循环研究表明这对活性无害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f930/5396341/fb8e39bb5c59/CCTC-8-3475-g001.jpg

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