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Alcohol‐Selective Oxidation in Water under Mild Conditions via a Novel Approach to Hybrid Composite Photocatalysts

机译:新型复合杂化光催化剂在温和条件下水中的醇选择性氧化

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摘要

The oxidation of alcohols to carbonyl compounds in a clean fashion (i.e., with water as a solvent or under solvent‐free conditions, and using O2 or H2O2 as the primary oxidant) is the subject of considerable research efforts. A new approach for the selective oxidation of soluble aromatic alcohols in water under mild conditions via a novel composite photocatalyst has been developed. The catalyst is synthesized by grafting 4‐(4‐(4‐hydroxyphenylimino)cyclohexa‐2,5dienylideneamino)phenol and silver nanoparticles onto the surface of moderately crystalline titanium dioxide. The titanium dioxide‐based composite was first extensively characterized and then employed in the catalytic oxidation of 4‐methoxybenzyl alcohol to 4‐methoxybenzaldehyde under UV irradiation in water at room temperature. The corresponding aldehyde was obtained with unprecedented high selectivity (up to 86 %). The method is general and opens the route to fabrication of photocatalytic composites based on titanium dioxide functionalized with shuttle organic molecules and metal nanoparticles for a variety of oxidative conversions.
机译:以清洁方式(即以水为溶剂或在无溶剂条件下,以O2或H2O2为主要氧化剂)将醇氧化为羰基化合物是大量研究工作的主题。已经开发了一种通过新型复合光催化剂在温和条件下选择性氧化水中可溶性芳香醇的新方法。催化剂是通过将4-(4-(4-羟基苯基亚氨基)环己-2-5,二烯基亚氨基氨基)苯酚和银纳米粒子接枝到中等结晶度的二氧化钛表面上而合成的。首先对二氧化钛基复合材料进行了广泛的表征,然后将其用于室温下在水中紫外线照射下将4-甲氧基苄醇催化氧化为4-甲氧基苯甲醛。以前所未有的高选择性(高达86%)获得了相应的醛。该方法是通用的,为基于二氧化钛的光催化复合材料的制备开辟了途径,该二氧化钛已被对接有机分子和金属纳米颗粒官能化以用于各种氧化转化。

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