Soft Condensed Matter, Debye Institute for Nanomaterials Science, Utrecht University, Princetonplein 5, 3584 CC Utrecht, The Netherlands.
J Chem Phys. 2022 Oct 21;157(15):154503. doi: 10.1063/5.0109377.
The assembly of colloidal cubic diamond is a challenging process since the shape and interaction parameters and the thermodynamic conditions where this structure is stable are elusive. The simultaneous use of shape-anisotropic particles and strong directional interactions has proven to be a successful path to exclusively nucleate this structure. Here, using molecular dynamics simulations, we explore in detail the conditions where the nucleation of cubic diamond from tetrahedral building blocks is favored. In particular, we focus on the effect of depletion and DNA-mediated interactions to form and stabilize this cubic diamond crystal. We find that a particular balance between the strength and the range of the depletion interactions enhances the self-assembly of stable cubic diamond, leading to a narrow region where this structure is nucleated. Moreover, we determine that stronger short-range depletion attractions may arrest the system, leading to the formation of percolating diamond networks or fully disordered gel structures. Accordingly, the internal arrangements of these structures exhibit a distinct variation in terms of fractal dimension and the presence of six-membered rings that increasingly acquire internal strain as the arrest gets more pronounced. With these results, we provide a clear route for the self-assembly of cubic colloidal diamond, toward the realization of crystals with superior photonic properties.
胶体立方金刚石的组装是一个具有挑战性的过程,因为这种结构的形状、相互作用参数和稳定的热力学条件难以捉摸。同时使用形状各向异性颗粒和强定向相互作用已被证明是专门成核这种结构的成功途径。在这里,我们使用分子动力学模拟详细探讨了从四面体构建块优先成核立方金刚石的条件。特别是,我们关注耗尽和 DNA 介导的相互作用对形成和稳定这种立方金刚石晶体的影响。我们发现,耗尽相互作用的强度和范围之间的特定平衡增强了稳定立方金刚石的自组装,导致在一个狭窄的区域中成核这种结构。此外,我们确定更强的短程耗尽吸引力可能会阻止系统,导致形成贯穿的金刚石网络或完全无序的凝胶结构。因此,这些结构的内部排列在分形维数和六元环的存在方面表现出明显的变化,随着阻碍变得更加明显,六元环越来越多地获得内部应变。有了这些结果,我们为胶体立方金刚石的自组装提供了一条明确的途径,朝着实现具有优异光子性能的晶体迈进。