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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Atomic and Molecular Adsorption on the Bi(111) Surface: Insights into Catalytic CO2 Reduction
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Atomic and Molecular Adsorption on the Bi(111) Surface: Insights into Catalytic CO2 Reduction

机译:Bi(111)表面上的原子和分子吸附:催化二氧化碳还原的见解

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摘要

Bismuth is known to exhibit high selectivity toward production of HCOOH when used as an electrocatalyst for reduction of CO2. However, the current deficiency of knowledge on the surface chemical properties of Bi hinders mechanistic understanding and efficient development of Bi catalysts. In this study, molecular adsorption phenomena on the Bi(111) surface related to the electrocatalytic reduction of CO2 (ERC) are studied using dispersion-corrected density functional theory calculations. It is shown that the Bi(111) surface is inert toward adsorption of molecular species other than O-2, such as CO2 CO2, and HCOOH, confirming the low chemical reactivity of the surface. The adsorbates with O-Bi bonds are systematically more stable than those with C Bi bonds. As a result, *OCHO (formate) is significantly preferred over *COOH (carboxyl), leading to selective formation of HCOOH over CO as ERC product. Direct formation of *OCHO by proton-coupled electron transfer to CO2 is suggested as the reaction mechanism for ERC. Structural, vibrational, and electronic details of these two adsorbates are provided to guide future experimental mechanistic studies.
机译:当用作电催化剂时,已知铋表现出对HCOOH的产生高选择性,以减少CO 2。然而,目前关于BI阻碍机械理解的表面化学性质的知识缺乏,有效地发展BI催化剂。在该研究中,使用分散校正的密度泛函理论计算研究了与CO 2(ERC)的电催化还原相关的BI(111)表面上的分子吸附现象。结果表明,Bi(111)表面朝向O-2之外的分子种类的吸附惰性,例如CO 2 CO 2和HCOOH,证实了表面的低化学反应性。具有O-Bi键的吸附物比用C BI键更稳定。结果,* Ocho(甲酸甲酸盐)显着优选在* coOH(羧基)上,导致HCOOH的COOH作为ERC产物选择性地形成。通过质子偶联电子转移直接形成* Ocho至CO 2作为ERC的反应机制。提供这两个吸附物的结构,振动和电子细节,以引导未来的实验机制研究。

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