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Design of highly selective ethanol dehydration nanocatalysts for ethylene production

机译:设计高度选择性的乙醇脱水nanocatalysts乙烯生产

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Rational design of catalysts for selective conversion of alcohols to olefins is key since product selectivity remains an issue due to competing etherification reactions. Using first principles calculations and chemical rules, we designed novel metal-oxide-protected metal nanoclusters (M13X4O12, with M = Cu, Ag, and Au and X = Al, Ga, and In) exhibiting strong Lewis acid sites on their surface, active for the selective formation of olefins from alcohols. These symmetrical nanocatalysts, due to their curvature, show unfavorable etherification chemistries, while favoring the olefin production. Furthermore, we determined that water removal and regeneration of the nanocatalysts is more feasible compared to the equivalent strong acid sites on solid acids used for alcohol dehydration. Our results demonstrate an exceptional stability of these new nanostructures with the most energetically favorable being Cu-based. Thus, the high selectivity and stability of these in-silico-predicted novel nanoclusters (e.g. Cu13Al4O12) make them attractive catalysts for the selective dehydration of alcohols to olefins.
机译:理性设计催化剂的选择性醇类转换成烯烃是关键由于产品选择性仍然是一个问题竞争的醚化反应。原则和化学计算规则,我们设计新颖metal-oxide-protected金属肽(M13X4O12 with M = Cu、Ag、和的和X =、Ga和表现出强烈的刘易斯表面酸性网站,积极的烯烃的选择性形成醇。这些对称nanocatalysts,由于他们曲率,显示不宜醚化化学反应,同时有利于烯烃生产。删除和nanocatalysts的再生相当于强相比更为可行酸对固体酸用于酒精脱水。这些新的纳米结构的异常稳定最积极铜元素。稳定的in-silico-predicted小说发光机制(例如Cu13Al4O12)有吸引力的催化剂的选择性醇的脱水烯烃。

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