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Nature of catalytically active sites in the supported WO3/ZrO2 solid acid system: a current perspective

机译:负载的WO3 / ZrO2固体酸体系中催化活性位点的性质:当前观点

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摘要

Tungstated zirconia (WO3/ZrO2) is one of the most well-studied solid acid catalyst systems and continues to attract the attention of both academia and industry. Understanding and controlling the properties of WO3/ZrO2 catalysts has been a topic of considerable interest over almost the past three decades, with a particular focus on discovering the relationship between catalytic activity and the molecular structure of the surface acid site. Amorphous tungsten oxide (WOx) species on ZrO2 surfaces were previously proposed to be very active for different acidic reactions such as alcohol dehydration and alkane isomerization. Recent developments in electron optical characterization and in situ spectroscopy techniques have allowed researchers to isolate the size, structure, and composition of the most active catalytic species, which are shown to be three-dimensional distorted Zr-WOx clusters (0.8–1.0 nm). Complementary theoretical calculations of the Brønsted acidity of these Zr-WOx clusters have confirmed that they possess the lowest deprotonation energy values. This new insight provides a foundation for the future characterization and theory of acidic supported metal oxide catalytic materials that will, hopefully, lead to the design of more active and selective catalysts. This perspective presents an up-to-date, comprehensive summary of the leading models of WO3/ZrO2 solid acid catalysts.
机译:钨态氧化锆(WO3 / ZrO2)是研究最深入的固体酸催化剂体系之一,并继续引起学术界和工业界的关注。在过去的近三十年中,了解和控制WO3 / ZrO2催化剂的性能一直是引起人们极大兴趣的主题,并且特别着重于发现催化活性与表面酸性位点的分子结构之间的关系。先前曾提出ZrO2表面的无定形氧化钨(WOx)对于不同的酸性反应(例如醇类脱水和烷烃异构化)具有很高的活性。电子光学表征和原位光谱技术的最新发展使研究人员能够分离出最具活性的催化物种的大小,结构和组成,这些物种被证明是三维扭曲的Zr-WOx簇(0.8-1.0 nm)。这些Zr-WOx团簇的布朗斯台德酸度的补充理论计算已证实它们具有最低的去质子能值。这一新见解为酸性负载型金属氧化物催化材料的未来表征和理论奠定了基础,有望有望导致设计出更具活性和选择性的催化剂。该观点介绍了WO3 / ZrO2固体酸催化剂的主要模型的最新,综合摘要。

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