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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Simultaneous production of aromatic aldehydes and dihydrogen by photocatalytic dehydrogenation of liquid alcohols over metal-loaded titanium(IV) oxide under oxidant- and solvent-free conditions
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Simultaneous production of aromatic aldehydes and dihydrogen by photocatalytic dehydrogenation of liquid alcohols over metal-loaded titanium(IV) oxide under oxidant- and solvent-free conditions

机译:在无氧化剂和无溶剂条件下,通过在负载金属的四氧化钛上进行液态醇的光催化脱氢,同时生产芳族醛和二氢

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摘要

Photocatalytic conversion of aromatic alcohols in acetonitrile (CH3CN) suspensions of metal-loaded tita-nium(IV) oxide under various conditions was examined. Benzaldehyde (PhCHO) and hydrogen (H2) were simultaneously produced with a molar ratio of 1:1 from benzyl alcohol (BnOH) in CH3CN suspensions of platinum-loaded titanium(IV) oxide (Pt-TiO2) under deaerated conditions and BnOH was converted quantitatively with high apparent quantum efficiency of 38% at 366 nm. The yield of PhCHO in dehydrogenation under deaerated conditions (>99%) was much higher than that (53%) obtained by dehydrogenation of BnOH in the presence of oxygen accompanying the formation of water instead of H2. When a small amount of water was intentionally added to the CH3CN suspension of Pt-TiO2, reaction rates of hydrogenation drastically decreased. Control experiments carried out under air and in the presence of water indicated that an oxygen-free condition was important for quantitative conversion of BnOH to PhCHO in two points, i.e., the reaction under oxygen-free conditions yields no water and active oxygen, that caused drastic decrease in the reaction rate and undesired oxidation of BnOH and PhCHO, respectively. Photocatalytic dehydrogenation of BnOH to PhCHO occurred even in a solvent-free condition in which Pt-TiO2 particles were suspended in BnOH. Photocatalytic hydrogenation under deaerated conditions was applied for conversions of various aromatic alcohols to corresponding aldehydes.
机译:在各种条件下,研究了芳香醇在负载金属的二氧化钛(IV)的乙腈(CH3CN)悬浮液中的光催化转化。在脱气条件下,在载铂的二氧化钛(Pt-TiO2)的CH3CN悬浮液中,由苄醇(BnOH)以1:1的摩尔比同时生产苯甲醛(PhCHO)和氢(H2),并转化BnOH在366 nm处具有38%的高表观量子效率的定量分析。在脱气条件下进行脱氢反应时,PhCHO的收率(> 99%)远远高于在存在氧气的同时伴随着水而不是H2的BnOH脱氢获得的(53%)。当有意向Pt-TiO2的CH3CN悬浮液中添加少量水时,氢化反应速率急剧下降。在空气和水的存在下进行的控制实验表明,无氧条件对于BnOH到PhCHO的定量转化有两个重要意义,即在无氧条件下的反应不产生水和活性氧,这导致BnOH和PhCHO的反应速率分别急剧降低和不希望的氧化。即使在无溶剂条件下,Pt-TiO2颗粒悬浮在BnOH中,也会发生BnOH光催化脱氢为PhCHO。在脱气条件下进行光催化氢化可将各种芳族醇转化为相应的醛。

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