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A series of highly dispersed carbon nanotube (CNT)-supported copper–cobalt–cerium catalysts were prepared using a facile and effective co-impregnation method. The catalysts were then examined for their ability to selectively convert syngas into ethanol and higher (C2+) alcohols with a narrow range distribution. Superior selectivity values of 31.6% and 60.2% for the formation of ethanol and C2+ alcohols,...
A series of carbon nanotube (CNT)-supported copper–cobalt–cerium catalysts were prepared and investigated for higher alcohols synthesis. The superior selectivity for the formation of ethanol and C2+ alcohols achieved using the CuCoCe/CNT(8) catalyst was 39.0% and 67.9%, respectively. The diameters of CNTs considerably influence the distribution of metal particles and the electronic interaction between...
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