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Oxidative strong metal–support interactions (OMSI) of supported platinum-group metal catalysts

机译:负载铂族金属催化剂的氧化性强金属-载体相互作用(OMSI)

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摘要

Supported platinum-group metal (PGM) catalysts are widely used in many important industrial processes. Metal–support interaction is of great importance in tailoring their catalytic performance. Here, we report the first example of oxidative strong metal–support interactions (OMSIs) between PGM and hydroxyapatite (HAP) which can be extended to PGM and ZnO. It occurred under high-temperature oxidation conditions accompanied by the encapsulation of PGM by HAP and electron transfer between PGM and HAP. With this OMSI, the aggregation and leaching of PGMs were significantly inhibited, resulting in an excellent catalytic stability and much improved reusability of supported Pt and Pd catalysts, respectively. This is the first time to find that PGMs can manifest OMSI which benefits the stabilization of PGM catalysts under oxidative reaction conditions. This new type of SMSI not only contributed to a deeper understanding of SMSI but also provided a new way to develop new stable PGM catalysts.
机译:负载型铂族金属(PGM)催化剂广泛用于许多重要的工业过程中。金属与载体之间的相互作用对于调整其催化性能至关重要。在这里,我们报告了P​​GM与羟基磷灰石(HAP)之间的氧化性强金属-载体相互作用(OMSI)的第一个示例,该相互作用可以扩展到PGM和ZnO。它在高温氧化条件下发生,伴随有HAP对PGM的封装以及PGM与HAP之间的电子转移。使用这种OMSI,PGM的聚集和浸出得到了显着的抑制,从而分别具有出色的催化稳定性和大大改善了负载型Pt和Pd催化剂的可重复使用性。这是首次发现PGM可以表现出OMSI,这有利于在氧化反应条件下稳定PGM催化剂。这种新型的SMSI不仅有助于加深对SMSI的了解,而且为开发新型稳定的PGM催化剂提供了新的途径。

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