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Function-led Design of Aerogels: Self-assembly of Alloyed PdNi Hollow Nanospheres for Efficient Electrocatalysis

Authors :
Cai, Bin
Wen, Dan
Liu, Wei
Herrmann, Anne-Kristin
Benad, Albrecht
Eychmüller, Alexander
Cai, Bin
Wen, Dan
Liu, Wei
Herrmann, Anne-Kristin
Benad, Albrecht
Eychmüller, Alexander
Source :
This is the peer reviewed version of the following article: Bin Cai, Dan Wen, Wei Liu, Anne-Kristin Herrmann, Albrecht Benad and Alexander Eychmüller (2015). Function-led Design of Aerogels: Self-assembly of Alloyed PdNi Hollow Nanospheres for Efficient Electrocatalysis. Angewandte Chemie-international Edition, 2015, Vol. 54(44), pp. 13101--13105, which has been published in final form at DOI: 10.1002/anie.201505307. Online ISSN: 1521-3757
Publication Year :
2016

Abstract

Amelioration of the building blocks is a plausible approach to graft aerogels with distinguished properties while preserving the aerogel superiority. However, the incorporation of designated properties into metallic aerogels, especially catalytically beneficial morphologies and transition metal doping, still remains a challenge. Here, we report on the first case of an aerogel electrocatalyst composed entirely of alloyed PdNi hollow nanospheres (HNSs) with controllable chemical composition and shell thickness. The synergy of the transition metal doping, combined with the hollow building blocks and the three dimensional network structure make the PdNi HNS aerogels promising electrocatalysts towards ethanol oxidation, among which the Pd83Ni17 HNS aerogel shows a 5.6-fold enhanced mass activity compared to commercial Pd/C. This work expands the exploitation approach of electrocatalytic properties of aerogels into morphology and composition control of its building blocks.

Details

Database :
OAIster
Journal :
This is the peer reviewed version of the following article: Bin Cai, Dan Wen, Wei Liu, Anne-Kristin Herrmann, Albrecht Benad and Alexander Eychmüller (2015). Function-led Design of Aerogels: Self-assembly of Alloyed PdNi Hollow Nanospheres for Efficient Electrocatalysis. Angewandte Chemie-international Edition, 2015, Vol. 54(44), pp. 13101--13105, which has been published in final form at DOI: 10.1002/anie.201505307. Online ISSN: 1521-3757
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1135779100
Document Type :
Electronic Resource