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Preparation and Catalytic Activity for Aerobic Glucose Oxidation of Crown Jewel Structured Pt/Au Bimetallic Nanoclusters

机译:皇冠珠宝结构的Pt / Au双金属纳米团簇的好氧葡萄糖氧化制备及催化活性

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Understanding of the "structure-activity" relations for catalysts at an atomic level has been regarded as one of the most important objectives in catalysis studies. Bimetallic nanoclusters (NCs) in its many types, such as core/shell, random alloy, cluster-in-cluster, bi-hemisphere, and crown jewel (one kind of atom locating at the top position of another kind of NC), attract significant attention owing to their excellent optical, electronic, and catalytic properties. PVP-protected crown jewel-structured Pt/Au (CJ-Pt/Au) bimetallic nanoclusters (BNCs) with Au atoms located at active top sites were synthesized via a replacement reaction using 1.4-nm Pt NCs as mother clusters even considering the fact that the replacement reaction between Pt and Au(3+) ions is difficult to be occurred. The prepared CJ-Pt/Au colloidal catalysts characterized by UV-Vis, TEM, HR-TEM and HAADF-STEM-EELS showed a high catalytic activity for aerobic glucose oxidation, and the top Au atoms decorating the Pt NCs were about 15 times more active than the Au atoms of Au NCs with similar particle size.
机译:在原子水平上理解催化剂的“结构-活性”关系被认为是催化研究中最重要的目标之一。具有多种类型的双金属纳米簇(NC)吸引,例如核/壳,无规合金,簇中簇,双半球和皇冠珠宝(一种原子位于另一种NC的顶部)由于其出色的光学,电子和催化性能,因此受到了极大的关注。通过使用1.4 nm Pt NCs作为母簇的置换反应合成了具有Au原子位于活性顶部位点的PVP保护的皇冠珠宝结构的Pt / Au(CJ-Pt / Au)双金属纳米簇(BNC)。 Pt和Au(3+)离子之间很难发生取代反应。以UV-Vis,TEM,HR-TEM和HAADF-STEM-EELS为特征的制备的CJ-Pt / Au胶体催化剂显示出对需氧葡萄糖氧化的高催化活性,装饰Pt NCs的顶部Au原子约高15倍。比具有相似粒径的Au NCs的Au原子具有更高的活性。

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