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金纳米粒子超晶体受压下的力学:软质基质的作用

Mechanics under pressure of gold nanoparticle supracrystals: the role of the soft matrix.

作者信息

Ibrahim Helen, Balédent Victor, Impéror-Clerc Marianne, Pansu Brigitte

机构信息

Université Paris-Saclay, CNRS, Laboratoire de Physique des Solides, UMR-8502 91405 Orsay France

出版信息

RSC Adv. 2022 Aug 19;12(36):23675-23679. doi: 10.1039/d2ra03484k. eCollection 2022 Aug 16.

Abstract

We report on High Pressure Small Angle X-ray Scattering (HP-SAXS) measurements on 3D face-centered cubic (FCC) supracrystals (SCs) built from spherical gold nanoparticles (NPs). Dodecane-thiol ligands are grafted on the surface and ensure the stability of the gold NPs by forming a protective soft layer. Under a hydrostatic pressure of up to 12 GPa, the SC showed a high structural stability. The bulk elastic modulus of the SC was derived from the HP-SAXS measurements. The compression of the SC undergoes two stages: the first one related to the collapse of the voids between the NPs followed by the second one related to the compression of the soft matrix which gives a major contribution to the mechanical behavior. By comparing the bulk modulus of the SC to that of dodecane, the soft matrix appears to be less compressible than the crystalline dodecane. This effect is attributed to a less optimized chain packing under pressure compared to the free chains, as the chains are constrained by both grafting and confinement within the soft matrix. We conclude that these constraints on chain packing within the soft matrix enhance the stability of SCs under pressure.

摘要

我们报告了对由球形金纳米颗粒(NPs)构建的三维面心立方(FCC)超晶体(SCs)进行的高压小角X射线散射(HP-SAXS)测量。十二烷硫醇配体接枝在表面,并通过形成保护性软层确保金纳米颗粒的稳定性。在高达12 GPa的静水压力下,超晶体表现出高结构稳定性。超晶体的体弹性模量由HP-SAXS测量得出。超晶体的压缩经历两个阶段:第一个阶段与纳米颗粒之间空隙的坍塌有关,随后第二个阶段与软基质的压缩有关,软基质对力学行为有主要贡献。通过将超晶体的体积模量与十二烷的体积模量进行比较,发现软基质的可压缩性低于结晶十二烷。这种效应归因于与自由链相比,压力下链堆积的优化程度较低,因为链在软基质中受到接枝和限制的双重约束。我们得出结论,软基质内链堆积的这些限制增强了超晶体在压力下的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2500/9389621/1810f6295678/d2ra03484k-f1.jpg

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