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首页> 外文期刊>Nanoscale >The induction phenomenon and catalytic deactivation of thiolate-stabilized raspberry-like polymer composites coated with gold nanoparticles
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The induction phenomenon and catalytic deactivation of thiolate-stabilized raspberry-like polymer composites coated with gold nanoparticles

机译:感应现象和催化失活的thiolate-stabilized便会形成树莓聚合物复合材料涂层金纳米粒子

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摘要

Alkylthiolate ligands play dual roles in metal nanoparticles-coated polymer composite catalysts: stabilizer and deactivator. Herein, individual raspberry-like polymer composite spheres coated with gold nanoparticles were separated from each other in the presence of 6-mercaptohexanoic acid or 3-mercaptopropionic acid ligands. Effects of thiolate ligands on the induction time and the catalytic activity of such nonaggregated polymer composites were investigated experimentally and theoretically in the 4-nitrophenol/NaBH4 model reaction from the following aspects: ligand surface coverage, chain order and chain length. With the increase in alkylthiolate surface coverage and chain order on composite particles, the induction time increases first and then decreases, which can be explained based on spontaneous dynamic surface restructuring and electron injection from borohydride ions to the gold nanoparticle surface. The catalytic activity is compromised with the existence of thiolate ligands, but is enhanced with increasing alkylthiolate ligand coverage, which can be ascribed to sulfur-induced electronic charge depletion of the gold nanoparticles. The increment of CH2 in alkylthiolate chains results in the increase of induction time and the decrease of the catalytic activity, which can be attributed to the steric hindrance effect. The reactant addition sequence was also found to affect the induction time and the catalytic activity, which can be partially credited to NaBH4 reductant-induced desorption of thiolate ligands.
机译:Alkylthiolate配体在金属扮演双重角色nanoparticles-coated聚合物复合催化剂:稳定剂和减活化剂。便会形成树莓聚合物复合球涂层与金纳米粒子被分开在6-mercaptohexanoic酸的存在或3-mercaptopropionic酸配体。硫醇盐配体诱导时间和催化活性的非聚合聚合物复合材料实验和调查理论上4-nitrophenol / NaBH4模型反应从以下方面:配体表面覆盖,秩序和链长链。与增加alkylthiolate表面覆盖率和链秩序复合粒子,诱导时间的增加,然后减少,这可以解释的基础上自发的动态重组和表面电子从硼氢化离子注入金纳米粒子表面。与硫醇盐的存在被破坏配体,但与日益增强alkylthiolate配体覆盖,可以归因于sulfur-induced电子电荷金纳米粒子的损耗。增量的CH2 alkylthiolate链的结果诱导时间的增加和催化活性的降低,可以由于位阻效应。反应物添加序列也被发现影响诱导时间和催化活动,可以部分地归功于NaBH4 reductant-induced解吸硫醇盐配体。

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