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Interfacial electronic effects control the reaction selectivity of platinum catalysts

Authors :
Chen, Guangxu
Xu, Chaofa
Huang, Xiaoqing
Ye, Jinyu
Gu, Lin
Li, Gang
Tang, Zichao
Wu, Binghui
Yang, Huayan
Zhao, Zipeng
Zhou, Zhiyou
Fu, Gang
Zheng, Nanfeng
Source :
Nature Materials; April 2016, Vol. 15 Issue: 5 p564-569, 6p
Publication Year :
2016

Abstract

Tuning the electronic structure of heterogeneous metal catalysts has emerged as an effective strategy to optimize their catalytic activities. By preparing ethylenediamine-coated ultrathin platinum nanowires as a model catalyst, here we demonstrate an interfacial electronic effect induced by simple organic modifications to control the selectivity of metal nanocatalysts during catalytic hydrogenation. This we apply to produce thermodynamically unfavourable but industrially important compounds, with ultrathin platinum nanowires exhibiting an unexpectedly high selectivity for the production of N-hydroxylanilines, through the partial hydrogenation of nitroaromatics. Mechanistic studies reveal that the electron donation from ethylenediamine makes the surface of platinum nanowires highly electron rich. During catalysis, such an interfacial electronic effect makes the catalytic surface favour the adsorption of electron-deficient reactants over electron-rich substrates (that is, N-hydroxylanilines), thus preventing full hydrogenation. More importantly, this interfacial electronic effect, achieved through simple organic modifications, may now be used for the optimization of commercial platinum catalysts.

Details

Language :
English
ISSN :
14761122 and 14764660
Volume :
15
Issue :
5
Database :
Supplemental Index
Journal :
Nature Materials
Publication Type :
Periodical
Accession number :
ejs38672805
Full Text :
https://doi.org/10.1038/nmat4555