Gazil Olivier, Rault Ludivine, Iglicki Déborah, Collière Vincent, Karacaoglan Gizem, Poinsot Didier, Bouzid Moad, Hierso Jean-Cyrille, Kahn Myrtil L, Virgilio Nick, Gauffre Fabienne
University of Rennes, CNRS, ISCR-UMR6226, F-35000 Rennes, France.
CREPEC, Department of Chemical Engineering, Polytechnique Montréal, C.P. 6079 Succursale Centre-Ville, Montréal, Québec H3C 3A7, Canada.
Langmuir. 2024 Aug 13;40(32):16824-16832. doi: 10.1021/acs.langmuir.4c01307. Epub 2024 Jul 31.
Herein, we achieved spontaneous emulsification of organometallic precursors to elaborate subμm metal nanocapsules after interfacial reduction. Depending on the proportion of the three components, water, solvent, and the metal precursor, either thermodynamically stable "surfactant-free microemulsions" (SFME) or metastable Ouzo emulsions are formed. We investigated the catalytic transition metals Au, Pd, and Pt, individually or combined, and stabilized by various ligands. Upon reduction of the precursors, either shells of discrete nanoparticles (NPs) or continuous shells were obtained, for the SFME and Ouzo emulsions, respectively. The Au/Pd mixed emulsions lead to a unique structural morphology, in which the Au-Pd nanoparticles are embedded in a continuous submicronic metal shell. The AuNPs are available to grow larger particles within the NP shell using a seeded growth approach. The water-stable and surfactant-free nanocapsules are appealing as catalysts, and, as such, were evaluated for the hydrolysis of ammonia-borane as a promising catalytic strategy for H release from an H-high-content storage material. This work establishes for the first time a genuine activity of water-compatible gold colloids for this reaction.
在此,我们通过界面还原实现了有机金属前驱体的自发乳化,以制备亚微米级金属纳米胶囊。根据水、溶剂和金属前驱体这三种组分的比例,会形成热力学稳定的“无表面活性剂微乳液”(SFME)或亚稳态的奥祖乳状液。我们分别研究了催化过渡金属金、钯和铂,单独或组合使用,并通过各种配体进行稳定。在前驱体还原后,对于SFME和奥祖乳状液,分别获得了离散纳米颗粒(NP)的壳层或连续壳层。金/钯混合乳状液导致了一种独特的结构形态,其中金-钯纳米颗粒嵌入连续的亚微米级金属壳中。使用种子生长方法,金纳米颗粒能够在NP壳内生长成更大的颗粒。水稳定且无表面活性剂的纳米胶囊作为催化剂具有吸引力,因此,我们评估了它们对氨硼烷水解的催化性能,这是一种从高氢含量储存材料中释放氢的有前景的催化策略。这项工作首次确立了水相容性金胶体对该反应的真正活性。