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首页> 外文期刊>RSC Advances >One-pot synthesis of hollow hydrangea Au nanoparticles as a dual catalyst with SERS activity for in situ monitoring of a reduction reaction
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One-pot synthesis of hollow hydrangea Au nanoparticles as a dual catalyst with SERS activity for in situ monitoring of a reduction reaction

机译:一锅合成中空绣球金纳米粒子作为具有SERS活性的双重催化剂,用于原位监测还原反应

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The controlled synthesis of metallic nanomaterials has attracted the interest of many researchers due to their shape-dependent physical and chemical properties. However, most of the synthesized nanocrystals cannot be combined with spectroscopy to measure the reaction kinetics, thus limiting their use in monitoring the catalytic reaction process to elucidate its mechanism. As a powerful analytical tool, surface-enhanced Raman spectroscopy (SERS) can be used to achieve in situ monitoring of catalytic reactions by developing bifunctional metal nanocrystals with both SERS and catalytic activities. Herein, we have developed a simple one-pot synthesis method for the large-scale and size-controllable preparation of highly rough hydrangea Au hollow nanoparticles. The growth mechanism of flower-like Au hollow nanostructures was also discussed. The hollow nanostructure with a 3D hierarchical flower shell combines the advantages of hollow nanostructure and hierarchical nanostructure, which possess high SERS activity and good catalytic activity simultaneously. Furthermore, the hydrangea Au hollow crystals were used as a bifunctional nanocatalyst for in situ monitoring of the reduction reaction of 4-nitrothiophenol to the 4-aminothiophenol.
机译:金属纳米材料的受控合成由于其形状依赖性的物理和化学性质而吸引了许多研究人员的兴趣。然而,大多数合成的纳米晶体不能与光谱学结合以测量反应动力学,因此限制了它们在监测催化反应过程以阐明其机理中的用途。作为一种强大的分析工具,表面增强拉曼光谱(SERS)可用于开发具有SERS和催化活性的双功能金属纳米晶体,从而实现对催化反应的原位监测。在这里,我们已经开发出一种简单的一锅合成方法,用于大规模和尺寸可控的高度粗糙绣球金空心纳米颗粒的制备。还讨论了花状金空心纳米结构的生长机理。具有3D分层花壳的空心纳米结构结合了空心纳米结构和分层纳米结构的优点,其同时具有高的SERS活性和良好的催化活性。此外,绣球花Au中空晶体被用作双功能纳米催化剂,用于原位监测4-硝基硫代苯酚向4-氨基硫代苯酚的还原反应。

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