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Electrocatalytic production of glycolic acid via oxalic acid reduction on titania debris supported on a TiO_(2)nanotube array 被引量:1
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作者 Francesco Pio Abramo Federica De Luca +4 位作者 Rosalba Passalacqua Gabriele Centi Gianfranco Giorgianni Siglinda Perathoner Salvatore Abate 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第5期669-678,共10页
Electrodes prepared by anodic oxidation of Ti foils are robust and not toxic materials for the electrocatalytic reduction of oxalic acid to glycolic acid, allowing the development of a renewable energy-driven process ... Electrodes prepared by anodic oxidation of Ti foils are robust and not toxic materials for the electrocatalytic reduction of oxalic acid to glycolic acid, allowing the development of a renewable energy-driven process for producing an alcoholic compound from an organic acid at low potential and room temperature. Coupled with the electrochemical synthesis of the oxalic acid from CO_(2),this process represents a new green and low-carbon path to produce added value chemicals from CO_(2). Various electrodes prepared by anodic oxidation of Ti foils were investigated. They were characterized by the presence of a TiO_(2) nanotube array together with the presence of small patches, debris, or TiO_(2) nanoparticles. The concentration of oxygen vacancies, the amount of Ti^(3+) measured by X-ray photoelectron spectroscopy(XPS) and the intensity of the anodic peak measured by cyclic voltammetry, were positively correlated with the achieved oxalic acid conversion and glycolic acid yield. The analysis of the results indicates the presence of small amorphous TiO_(2) nanoparticles(or surface patches or debris) interacting with TiO_(2) nanotubes, the sites responsible for the conversion of oxalic acid and glycolic acid yield. By varying this structural characteristic of the electrodes, it is possible to tune the glycolic acid to glyoxylic acid relative ratio. A best cumulative Faradaic efficiency(FE) of about 84% with FE to glycolic acid around 60% and oxalic conversion about 30% was observed. 展开更多
关键词 Oxalic acid TiO_(2)nanotubes glyoxylic acid Glycolic acid ELECTROCATALYSIS
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Lewis酸催化Glyoxylate-Ene反应合成α-羟基酯的研究
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作者 何锡君 沈振陆 +3 位作者 莫卫民 谢翼 胡宝祥 孙楠 《化学世界》 CAS CSCD 北大核心 2006年第12期740-742,745,共4页
研究比较了几种Lewis酸对α-甲基苯乙烯和乙醛酸乙酯反应合成α-羟基-4-苯基-4-戊烯酸乙酯(EHPP)的催化性能,其中SnCl4的催化活性最高。在n(α-甲基苯乙烯)∶n(乙醛酸乙酯)∶n(SnCl4)=1∶1∶0.03,反应温度20℃,反应时间90 min的条件下,... 研究比较了几种Lewis酸对α-甲基苯乙烯和乙醛酸乙酯反应合成α-羟基-4-苯基-4-戊烯酸乙酯(EHPP)的催化性能,其中SnCl4的催化活性最高。在n(α-甲基苯乙烯)∶n(乙醛酸乙酯)∶n(SnCl4)=1∶1∶0.03,反应温度20℃,反应时间90 min的条件下,α-甲基苯乙烯的转化率为98.6%,EHPP的选择性和收率分别达到95.6%和94.3%。同时研究了其他烯烃和乙醛酸酯合成α-羟基酯的反应,结果表明SnCl4也具有较高的催化活性。 展开更多
关键词 Glyoxylate—Ene反应 α-羟基酯 乙醛酸乙酯 Α-甲基苯乙烯 催化 SNCL4
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