Mondal Manodeep, Ganapathy Rajesh
Chemistry and Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore-560064, India.
International Centre for Materials Science, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore-560064, India.
Phys Rev Lett. 2022 Aug 19;129(8):088003. doi: 10.1103/PhysRevLett.129.088003.
Surface strain can alter the dynamics of adsorbates, and often, the adsorbates themselves induce and interact via their surface strain fields. In epitaxy, such strain-mediated effects get further compounded when a misfit strain exists due to lattice mismatch between the growing film and substrate. Here, we carry out particle-resolved imaging of heteroepitaxial growth of multilayer colloidal films where the particles interact via a short-range attraction. Surprisingly, although the misfit strain relaxed systematically with film thickness, the adcolloid diffusivity was nonmonotonic. We show that this nonmonotonicity stems from the competition between the spatial extent of self-induced in-layer strain and the short interaction range. Importantly, we provide direct evidence for long-ranged strain-mediated interactions between adsorbates and show that it alters the growing film's morphology.
表面应变可以改变吸附质的动力学,而且通常情况下,吸附质自身会通过其表面应变场产生诱导作用并相互作用。在外延生长中,当生长薄膜与衬底之间存在晶格失配导致失配应变时,这种应变介导的效应会进一步复杂化。在此,我们对多层胶体薄膜的异质外延生长进行了粒子分辨成像,其中粒子通过短程吸引力相互作用。令人惊讶的是,尽管失配应变随薄膜厚度系统地松弛,但吸附胶体的扩散率并非单调变化。我们表明,这种非单调性源于自诱导层内应变的空间范围与短相互作用范围之间的竞争。重要的是,我们提供了吸附质之间长程应变介导相互作用的直接证据,并表明它会改变生长薄膜的形态。