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预成核簇在金纳米颗粒结晶中的作用。

The role of pre-nucleation clusters in the crystallization of gold nanoparticles.

作者信息

Ramamoorthy Raj Kumar, Yildirim Ezgi, Barba Enguerrand, Roblin Pierre, Vargas Jorge A, Lacroix Lise-Marie, Rodriguez-Ruiz Isaac, Decorse Philippe, Petkov Valeri, Teychené Sébastien, Viau Guillaume

机构信息

Université de Toulouse, Laboratoire de Physique et Chimie des Nano-Objets UMR 5215 INSA, CNRS, UPS, 135 avenue de Rangueil, F-31077 Toulouse cedex 4, France.

Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INP, UPS Toulouse, France.

出版信息

Nanoscale. 2020 Aug 6;12(30):16173-16188. doi: 10.1039/d0nr03486j.

Abstract

The syntheses of metal nanoparticles by reduction in apolar solvents in the presence of long chain surfactants have proven to be extremely effective in the control of the particle size and shape. Nevertheless, the elucidation of the nucleation/growth mechanism is not straightforward because of the multiple roles played by surfactants. The nucleation stage, in particular, is very difficult to describe precisely and requires in situ and time-resolved techniques. Here, relying on in situ small angle X-ray scattering (SAXS), X-ray absorption spectroscopy (XAS) and high-energy X-ray diffraction (HE-XRD), we propose that ultra-small gold particles prepared by reduction of gold chloride in a solution of oleylamine (OY) in hexane with triisopropylsilane do not follow a classical nucleation process but result from pre-nucleation clusters (PNCs). These PNCs contain Au(iii) and Au(i) precursors; they are almost stable in size during the induction stage, as shown by SAXS, prior to undergoing a very fast shrinkage during the nucleation stage. The gold speciation as a function of time deduced from the XAS spectra has been analyzed through multi-step reaction pathways comprising both highly reactive species, involved in the nucleation and growth stages, and poorly reactive species acting as a reservoir for the reactive species. The duration of the induction period is related to the reactivity of the gold precursors, which is tuned by the coordination of OY to the gold complexes, while the nucleation stage was found to depend on the size and reactivity of the PNCs. The role of the PNCs in determining the final particle size and structure is also discussed in relation to previous studies. The multiple roles of OY, as the solubilizing agent of the gold salt, the ligand of the gold complexes determining both the size of the PNCs and the reactivity of the gold precursors, and finally the capping agent of the final gold particles as oleylammonium chloride, have been clearly established. This work opens new perspectives to synthesize metal NPs via metal-organic PNCs and to define new synthesis routes for nanoparticles that may present structure and morphologies different from those obtained by the classical nucleation routes.

摘要

在长链表面活性剂存在下,通过在非极性溶剂中还原合成金属纳米颗粒已被证明在控制颗粒尺寸和形状方面极为有效。然而,由于表面活性剂所起的多种作用,阐明成核/生长机制并非易事。特别是成核阶段,很难精确描述,需要原位和时间分辨技术。在此,依靠原位小角X射线散射(SAXS)、X射线吸收光谱(XAS)和高能X射线衍射(HE-XRD),我们提出,通过用三异丙基硅烷在己烷中的油胺(OY)溶液中还原氯化金制备的超小金颗粒并不遵循经典的成核过程,而是由预成核簇(PNC)产生的。这些PNC包含Au(iii)和Au(i)前体;如SAXS所示,在诱导阶段它们的尺寸几乎稳定,然后在成核阶段经历非常快速的收缩。通过包含参与成核和生长阶段的高反应性物种以及作为反应性物种储存库的低反应性物种的多步反应途径,分析了从XAS光谱推导的金形态随时间的变化。诱导期的持续时间与金前体的反应性有关,这通过OY与金配合物的配位来调节,而成核阶段则取决于PNC的尺寸和反应性。还结合先前的研究讨论了PNC在确定最终颗粒尺寸和结构中的作用。OY作为金盐的增溶剂、决定PNC尺寸和金前体反应性的金配合物的配体,以及最终作为油胺氯化物的最终金颗粒的封端剂的多种作用已得到明确证实。这项工作为通过金属有机PNC合成金属纳米颗粒以及为可能呈现与经典成核途径不同的结构和形态的纳米颗粒定义新的合成路线开辟了新的前景。

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