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In situ synthesis of metal clusters encapsulated within small-pore zeolites via a dry gel conversion method

机译:原位合成金属封装的集群通过干凝胶在狭小孔隙沸石转换方法

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We report here a facile strategy for encapsulating Pt clusters into MFI crystals via a dry gel conversion (DGC) method, by introducing Pt-immobilized Schiff-SiO2 as the silicon resource. This protocol involves a solid phase transformation process for crystallization which occurs without significant deconstruction of the structure of the Pt-containing precursor. High-angle annular dark-field scanning transmission electron microscopy images indicate that most of the Pt clusters are less than 1 nm in size and located in defective channels or voids of MFI. Thanks to the encapsulation role, these Pt clusters are stable against sintering even after calcination at 500 degrees C and only grow up to similar to 2.8 nm after calcination at 800 degrees C. The uniform pore structure of a zeolite endows the Pt@zeolite catalyst with shape-selectivity for hydrogenation and oxidation reactions over size differentiated analog substrates. This synthesis method is attainable for the embedment of stable metal clusters inside the small-pore MFI zeolite.
机译:我们在这里报告一个封装的简单策略Pt集群在MFI晶体通过干凝胶转换及其它)方法,通过引入Pt-immobilized Schiff-SiO2硅资源。转换过程的结晶没有发生重要的解构Pt-containing前体的结构。高纬度环形暗场扫描透射电子显微镜图像显示大部分的Pt集群是小于1海里在大小和位于缺陷或渠道小额信贷机构的空洞。这些Pt集群对烧结是稳定的即使在500摄氏度,只有煅烧长到类似于2.8 nm煅烧后800度的均匀的孔隙结构沸石赋予Pt@zeolite催化剂shape-selectivity氢化和氧化反应在大小有区别的模拟基板。金属集群内部埋置的稳定狭小孔隙MFI沸石。

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