Chemical Engineering Science 2018-03-27

Facet Design Promotes Electroreduction of Carbon Dioxide to Carbon Monoxide on Palladium Nanocrystals

Hao Dong, Lei Zhang, Piaoping Yang, Xiaoxia Chang, Wenjin Zhu, Xiaohong Ren, Zhi-jian Zhao, Jinlong Gong

Index: 10.1016/j.ces.2018.03.029

Full Text: HTML

Abstract

Highly selective electrochemical carbon dioxide reduction to valuable chemical products is a crucial approach to alleviate the energy crisis. To date, some noble metal based heterogeneous catalysts such as Pd exhibits high activity for electrochemical carbon dioxide reduction. However, few systematic studies of the active reaction site of these catalysts have been reported. This paper describes the facet effect on Pd nanocrystals with the same size for CO2 electroreduction. The surface structure of Pd catalysts enclosed with {310}, {100} and {111} facets can be precisely controlled. The Pd concave cubes enclosed with high-index {310} facets show the highest CO Faradaic efficiency (FE) of 90.6%, compared with Pd cubes enclosed with {100} facets and Pd octahedrons enclosed with {111} facets. Density functional theory calculations reveal that the {310} facets of concave cubes boost the catalytic activity by facilitating the COOH∗ formation and the desorption of CO∗.

Latest Articles:

Ab-initio process synthesis using evolutionary programming

2018-04-11

[10.1016/j.ces.2018.04.015]

Effect of mass diffusion upon the thermal-diffusive behavior of a dry vibrated granular bed

2018-04-11

[10.1016/j.ces.2018.04.020]

Facile mechanochemical modification of g-C3N4 for selective photo-oxidation of benzyl alcohol

2018-04-03

[10.1016/j.ces.2018.04.001]

Hydrodynamic characteristics of particles with different roughness and deformability in a liquid fluidized bed

2018-04-03

[10.1016/j.ces.2018.03.058]

Oxygen Reduction Reaction on Pt(111), Pt(221), and Ni/Au1Pt3(221) Surfaces: Probing Scaling Relationships of Reaction Energetics and Interfacial Composition

2018-04-01

[10.1016/j.ces.2018.03.054]

More Articles...