Noual Adnane, Kang Eunsoo, Maji Tanmoy, Gkikas Manos, Djafari-Rouhani Bahram, Fytas George
Faculté Pluridisciplinaire Nador, LPMR, Université Mohammed Premier, Oujda BP 717-60 000, Morocco.
Max Planck Institute for Polymer Research, Ackermannweg 10, Mainz 55128, Germany.
J Phys Chem C Nanomater Interfaces. 2021 Jul 15;125(27):14854-14864. doi: 10.1021/acs.jpcc.1c04549. Epub 2021 Jun 30.
Particle vibrational spectroscopy has emerged as a new tool for the measurement of elasticity, glass transition, and interactions at a nanoscale. For colloid-based materials, however, the weakly localized particle resonances in a fluid or solid medium renders their detection difficult. The strong amplification of the inelastic light scattering near surface plasmon resonance of metallic nanoparticles (NPs) allowed not only the detection of single NP eigenvibrations but also the interparticle interaction effects on the acoustic vibrations of NPs mediated by strong optomechanical coupling. The "rattling" and quadrupolar modes of Ag/polymer and polymer-grafted Ag NPs with different diameters in their assemblies are probed by Brillouin light spectroscopy (BLS). We present thorough theoretical 3D calculations for anisotropic Ag elasticity to quantify the frequency and intensity of the "rattling" mode and hence its BLS activity for different interparticle separations and matrix rigidity. Theoretically, a liquidlike environment, e.g., poly(isobutylene) (PIB) does not support rattling vibration of Ag dimers but unexpectedly hardening of the extremely confined graft melt renders both activation of the former and a frequency blue shift of the fundamental quadrupolar mode in the grafted nanoparticle Ag@PIB film.
粒子振动光谱已成为一种用于测量纳米尺度下弹性、玻璃化转变及相互作用的新工具。然而,对于基于胶体的材料,流体或固体介质中弱局域化的粒子共振使得对其进行检测变得困难。金属纳米粒子(NPs)在表面等离子体共振附近的非弹性光散射的强放大作用,不仅能够检测单个NP本征振动,还能检测由强光机械耦合介导的粒子间相互作用对NP声振动的影响。通过布里渊光光谱(BLS)探测了不同直径的Ag/聚合物和聚合物接枝Ag NPs组装体中的“晃动”和四极模式。我们针对各向异性Ag弹性进行了全面的理论三维计算,以量化“晃动”模式的频率和强度,从而确定其在不同粒子间间距和基体刚度下的BLS活性。理论上,类似液体的环境,如聚异丁烯(PIB),不支持Ag二聚体的晃动振动,但令人意外的是,极度受限的接枝熔体的硬化使得前者被激活,且接枝纳米粒子Ag@PIB薄膜中的基本四极模式发生频率蓝移。