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Hollow mesoporous SiO2 sphere nanoarchitectures with encapsulated silver nanoparticles for catalytic reduction of 4-nitrophenol

机译:空心介孔SiO2球纳米结构与封装的银纳米颗粒的催化还原4-硝基苯酚

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摘要

Ideally, a superior catalyst should possess high speed, selectivity and stability. However, it is difficult to holistically achieve high speed, selectivity and stability catalysis with modest configured catalyst structures. This work reports a new pre-shell/post-core approach combined with a laser ablation treatment strategy to fabricate a sophisticated catalyst architecture configured with a hollow mesoporous SiO2 (hm-SiO2) sphere shell and multiple encapsulated Ag nanoparticle (NP) yolks (Ag@hm-SiO2). Each Ag@hm-SiO2 nanosphere encapsulates 5–10 Ag NP yolks with an average size of 20 nm, in which the content of silver is about 3.6 wt% based on the inductively coupled plasma measurement. To further enhance the catalytic activity, a laser ablation treatment strategy is innovatively utilized to reduce the sizes of the encapsulated Ag NP yolks and increase their numbers. The catalytic reduction of 4-nitrophenol (4-NP) is used to evaluate the catalytic performance of the fabricated Ag@hm-SiO2 catalyst architecture before and after laser ablation treatment. The laser ablation treated Ag@hm-SiO2 nanospheres demonstrate a three-fold increased catalytic activity towards 4-NP reduction with excellent stability. Such superior catalytic performance could be attributed to the unique structural features of the Ag@hm-SiO2 architecture, in which the mesopore shell provides not only readily accessible pathways for fast transport of reactants to the encapsulated Ag NPs but also an effective protective shield for the encapsulated Ag NPs.
机译:理想地,优良的催化剂应具有高速,选择性和稳定性。然而,用适度配置的催化剂结构难以全面实现高速,选择性和稳定性催化。这项工作报告了一种新的前壳/后核方法与激光烧蚀处理策略相结合,以制造由空心中孔SiO2(hm-SiO2)球壳和多个封装的Ag纳米颗粒(NP)卵黄(Ag)构成的复杂催化剂体系结构@ hm-SiO2)。每个Ag @ hm-SiO2纳米球囊封5-10个平均大小为20 nm的Ag NP卵黄,根据电感耦合等离子体测量,其中的银含量约为3.6 wt%。为了进一步增强催化活性,创新地采用了激光烧蚀处理策略来减小封装的Ag NP蛋黄的尺寸并增加其数量。 4-硝基苯酚(4-NP)的催化还原用于评估激光烧蚀处理前后制备的Ag @ hm-SiO2催化剂结构的催化性能。经激光烧蚀处理的Ag @ hm-SiO2纳米球具有极佳的稳定性,对4-NP还原的催化活性提高了三倍。这种优异的催化性能可以归因于Ag @ hm-SiO2体系结构的独特结构特征,其中中孔壳层不仅为将反应物快速运输到包封的Ag NPs提供了容易获得的途径,而且还提供了有效的保护层。封装的银纳米颗粒。

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