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review article

Colloidal Nanocrystals as Electrocatalysts with Tunable Activity and Selectivity

Guntern, Yannick T.
•
Okatenko, Valery  
•
Pankhurst, James  
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February 5, 2021
Acs Catalysis

Correlating the catalyst activity, selectivity, and stability with its structure and composition is of the utmost importance in advancing the knowledge of heterogeneous electrocatalytic processes for chemical energy conversion. Well-defined colloidal nanocrystals with tunable monodisperse size and uniform shapes are ideal platforms to investigate the effect of these parameters on the catalytic performance. In addition to translating the knowledge from single-crystal studies to more realistic conditions, the morphological and compositional complexity attainable by colloidal chemistry can provide access to active catalysts which cannot be produced by other synthetic approaches. The sample uniformity is also beneficial to investigate catalyst reconstruction processes via both ex situ and operando techniques. Finally, colloidal nanocrystals are obtained as inks, a feature which facilitates their integration on different substrates and cell configurations to study the impact of interactions at the mesoscale and the device-dependent reaction microenvironment on the catalytic outcome. In this Review, we discuss recent studies in selected electrochemical reactions and provide our outlook on future developments on the use of well-defined colloidal nanocrystals as an emerging class of electrocatalysts.

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Type
review article
DOI
10.1021/acscatal.0c04403
Web of Science ID

WOS:000618540300020

Author(s)
Guntern, Yannick T.
Okatenko, Valery  
Pankhurst, James  
Varandili, Seyedeh Behnaz  
Iyengar, Pranit  
Koolen, Cedric  
Stoian, Dragos  
Vavra, Jan  
Buonsanti, Raffaella  
Date Issued

2021-02-05

Published in
Acs Catalysis
Volume

11

Issue

3

Start page

1248

End page

1295

Subjects

Chemistry, Physical

•

Chemistry

•

colloidal chemistry

•

nanoparticles

•

heterogeneous catalysis

•

electrocatalysts

•

hydrogen evolution reaction

•

oxygen evolution reaction

•

co2 reduction reaction

•

fuel cell reactions

•

oxygen reduction reaction

•

electrochemical co2 reduction

•

shape-controlled synthesis

•

high-index facets

•

platinum nanoparticle catalysts

•

formic-acid electrooxidation

•

cell electron-microscopy

•

sum-frequency generation

•

single-crystal surfaces

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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LNCE  
LMER  
INE  
Available on Infoscience
March 26, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/176195
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