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光诱导微流体制备超小铂纳米颗粒。

Photo-induced microfluidic production of ultrasmall platinum nanoparticles.

作者信息

Marelli Marcello, Perez Schmidt Patricia, Nguyen Xuan Trung, Pitzalis Emanuela, Poggini Lorenzo, Ragona Laura, Pagano Katiuscia, Aronica Laura Antonella, Polito Laura, Evangelisti Claudio

机构信息

CNR-SCITEC, Institute of Science and Chemical Technologies "Giulio Natta", Via Fantoli 16/15, 20138 Milano, Italy.

CNR-ICCOM, Institute of Chemistry of OrganoMetallic Compounds, Via G. Moruzzi 1, 56124 Pisa, Italy.

出版信息

Nanoscale. 2024 Oct 31;16(42):19669-19674. doi: 10.1039/d4nr02971b.

Abstract

We describe here the synthesis of ultrasmall Pt nanoparticles (NPs) obtained by a robust and reliable protocol using UV-Vis photoreduction of a platinum salt precursor, under continuous flow conditions. These ligand-free Pt NPs were rapidly dispersed onto a solid support or stabilized towards aggregation as a colloidal solution by the addition of an appropriate ligand in the reaction mixture. The proposed protocol exploits a microfluidic platform where the Pt precursor is photo-reduced to small Pt NPs (1.3 nm) at room temperature in the presence of ethanol, without any additional reducing agent. We apply the protocol to prepare Pt NPs highly dispersed on carbon support (Pt/C) proven to be a very efficient heterogeneous catalyst for both the hydrosilylation of terminal alkynes and hydrogenation of nitroaromatic compounds, selected as model reactions. Furthermore, we exploit the versatility of this microfluidic approach to produce stabilized aqueous/ethanol colloidal solutions of Pt NPs, employing a ligand of choice (, PVP or a thiol-ligand). These colloids offer long-term storage and further ligand modification. We showcase the synthesis of biocompatible glycol-stabilized Pt nanoparticles as an exemplary application.

摘要

我们在此描述了一种超小铂纳米颗粒(NPs)的合成方法,该方法通过一种稳健可靠的方案,在连续流动条件下利用铂盐前体的紫外-可见光照还原反应来实现。这些无配体的铂纳米颗粒通过在反应混合物中添加适当的配体,能够迅速分散在固体载体上,或者作为胶体溶液稳定地防止聚集。所提出的方案利用了一个微流控平台,在乙醇存在的室温条件下,无需任何额外的还原剂,将铂前体光还原为小尺寸的铂纳米颗粒(1.3纳米)。我们应用该方案制备了高度分散在碳载体上的铂纳米颗粒(Pt/C),经证明,对于末端炔烃的硅氢化反应和硝基芳烃化合物的氢化反应这两个选定的模型反应,它是一种非常高效的多相催化剂。此外,我们利用这种微流控方法的多功能性,通过选择一种配体(聚乙烯吡咯烷酮或硫醇配体)来制备稳定的铂纳米颗粒水/乙醇胶体溶液。这些胶体具有长期储存性能,并可进行进一步的配体修饰。我们展示了生物相容性二醇稳定的铂纳米颗粒的合成作为一个示例性应用。

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