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纳米晶体/金属有机框架杂化物作为用于CO转化的电催化平台

Nanocrystal/Metal-Organic Framework Hybrids as Electrocatalytic Platforms for CO Conversion.

作者信息

Guntern Yannick T, Pankhurst James R, Vávra Jan, Mensi Mounir, Mantella Valeria, Schouwink Pascal, Buonsanti Raffaella

机构信息

Laboratory of Nanochemistry for Energy (LNCE), Institute of Chemical Sciences and Engineering (ISIC), École Polytechnique Fédérale de Lausanne, 1950, Sion, Switzerland.

Institute of Chemical Sciences and Engineering (ISIC), École Polytechnique Fédérale de Lausanne, 1950, Sion, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2019 Sep 2;58(36):12632-12639. doi: 10.1002/anie.201905172. Epub 2019 Aug 2.

Abstract

The tunable chemistry linked to the organic/inorganic components in colloidal nanocrystals (NCs) and metal-organic frameworks (MOFs) offers a rich playground to advance the fundamental understanding of materials design for various applications. Herein, we combine these two classes of materials by synthesizing NC/MOF hybrids comprising Ag NCs that are in intimate contact with Al-PMOF ([Al (OH) (TCPP)]) (tetrakis(4-carboxyphenyl)porphyrin (TCPP)), to form Ag@Al-PMOF. In our hybrids, the NCs are embedded in the MOF while still preserving electrical contact with a conductive substrate. This key feature allows the investigation of the Ag@Al-PMOFs as electrocatalysts for the CO reduction reaction (CO RR). We show that the pristine interface between the NCs and the MOFs accounts for electronic changes in the Ag, which suppress the hydrogen evolution reaction (HER) and promote the CO RR. We also demonstrate a minor contribution of mass-transfer effects imposed by the porous MOF layer under the chosen testing conditions. Furthermore, we find an increased morphological stability of the Ag NCs when combined with the Al-PMOF. The synthesis method is general and applicable to other metal NCs, thus revealing a new way to think about rationally tailored electrocatalytic materials to steer selectivity and improve stability.

摘要

胶体纳米晶体(NCs)和金属有机框架(MOFs)中与有机/无机成分相关的可调化学性质为推进对各种应用材料设计的基本理解提供了丰富的研究领域。在此,我们通过合成包含与Al-PMOF([Al(OH)(TCPP)])(四(4-羧基苯基)卟啉(TCPP))紧密接触的Ag NCs的NC/MOF杂化物,将这两类材料结合起来,形成Ag@Al-PMOF。在我们的杂化物中,NCs嵌入在MOF中,同时仍与导电基底保持电接触。这一关键特性使得能够将Ag@Al-PMOFs作为用于CO还原反应(CO RR)的电催化剂进行研究。我们表明,NCs与MOFs之间的原始界面导致了Ag中的电子变化,这抑制了析氢反应(HER)并促进了CO RR。我们还证明了在所选测试条件下,多孔MOF层施加的传质效应的贡献较小。此外,我们发现当与Al-PMOF结合时,Ag NCs的形态稳定性增加。该合成方法具有通用性,适用于其他金属NCs,从而揭示了一种合理定制电催化材料以控制选择性和提高稳定性的新思路。

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