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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Enhancing the selectivity of CO formation for electrochemical reduction of CO2 on tin(IV) oxide-based catalysts
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Enhancing the selectivity of CO formation for electrochemical reduction of CO2 on tin(IV) oxide-based catalysts

机译:增强CO形成CO2在氧化锡氧化锡氧化锡催化剂中的电化学减少的选择性

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In this work, the relationship between crystal size of SnO2 and CO selectivity (the CO/formate ratio) is investigated and a great enhancement in CO selectivity is achieved by reduction in its crystal size. The crystal size of SnO2 is less than 5 nm by the synthesis of a core-shell-like microstructure of SnO2 on the rutile-phase TiO2 particles (denoted as R-TiO2@SnO2). The faradaic efficiency and CO selectivity are promoted to be over 42% and 1.18, which are two folds of that of pure SnO2 nanocrystals. According to the X-ray photoelectron spectroscopic results, SnO is more active for the CO2 ER to generate CO than Sn or SnO2 and the corresponding electrochemical reduction pathway of CO(2 )on SnOx is proposed. The increase in the electron density on the oxygen atom of SnO may increase the possibility of *COOH formation, favoring the formation of CO. (C) 2020 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在这项工作中,研究了SnO2和CO选择性(CO /甲酸求比)的晶体尺寸之间的关系,并通过降低其晶体尺寸来实现CO选择性的显着增强。 通过在金红石相TiO 2颗粒上合成SnO 2的核壳状微观结构的SnO 2的晶体尺寸小于5nm(表示为R-TiO 2 @ snO2)。 游览效率和CO选择性促进超过42%和1.18,这是纯SnO2纳米晶体的两倍。 根据X射线光电子能谱结果,SnO对于CO 2 ER更活跃,以产生CO或SnO2,并且提出了CO(2)的相应电化学还原途径。 SnO的氧原子上的电子密度的增加可能增加* COOH形成的可能性,偏好CO的形成。(c)2020台湾化学工程研究所。 elsevier b.v出版。保留所有权利。

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