Title : Charge polarization at a Au-TiC interface and the generation of highly active and selective catalysts for the low-temperature water-gas shift reaction.

Pub. Date : 2014 Oct 13

PMID : 25196121






5 Functional Relationships(s)
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1 Charge polarization at a Au-TiC interface and the generation of highly active and selective catalysts for the low-temperature water-gas shift reaction. Water pleckstrin and Sec7 domain containing 4 Homo sapiens
2 Strong metal-support interactions make Au/TiC(001) an excellent catalyst for the low-temperature water-gas shift (WGS), with turnover frequencies orders of magnitude larger than those observed for conventional metal/oxide catalysts. Metals pleckstrin and Sec7 domain containing 4 Homo sapiens
3 Strong metal-support interactions make Au/TiC(001) an excellent catalyst for the low-temperature water-gas shift (WGS), with turnover frequencies orders of magnitude larger than those observed for conventional metal/oxide catalysts. Water pleckstrin and Sec7 domain containing 4 Homo sapiens
4 Strong metal-support interactions make Au/TiC(001) an excellent catalyst for the low-temperature water-gas shift (WGS), with turnover frequencies orders of magnitude larger than those observed for conventional metal/oxide catalysts. Metals pleckstrin and Sec7 domain containing 4 Homo sapiens
5 Strong metal-support interactions make Au/TiC(001) an excellent catalyst for the low-temperature water-gas shift (WGS), with turnover frequencies orders of magnitude larger than those observed for conventional metal/oxide catalysts. Oxides pleckstrin and Sec7 domain containing 4 Homo sapiens