Center for Nonlinear Phenomena and Complex Systems, Code Postal 231, Université Libre de Bruxelles, Boulevard du Triomphe, 1050 Brussels, Belgium.
Nanoscale. 2018 Mar 8;10(10):4921-4926. doi: 10.1039/c7nr08705e.
Targeting specific technological applications requires the control of nanoparticle properties, especially the crystalline polymorph. Freezing a nanodroplet deposited on a solid substrate leads to the formation of crystalline structures. We study the inherent mechanisms underlying this general phenomenon by means of molecular dynamics simulations. Our work shows that different crystal structures can be selected by finely tuning the solid substrate lattice parameter. Indeed, while for our system, face-centered cubic is usually the most preponderant structure, the growth of two distinct polymorphs, hexagonal centered packing and body-centered cubic, was also observed even when the solid substrate was face-centered cubic. Finally, we also demonstrated that the growth of hexagonal centered packing is conditioned by the appearance of large enough body-centered cubic clusters thus suggesting the presence of a cross-nucleation pathway. Our results provide insights into the impact of nanoscale effects and solid substrate properties towards the growth of polymorphic nanomaterials.
靶向特定的技术应用需要控制纳米颗粒的性质,特别是晶体多晶型。在固体基底上沉积的纳米液滴冻结会导致晶体结构的形成。我们通过分子动力学模拟研究了这一普遍现象背后的内在机制。我们的工作表明,通过精细调整固体基底晶格参数,可以选择不同的晶体结构。实际上,对于我们的体系,面心立方通常是最主要的结构,但也观察到了两种不同的多晶型结构,即六方密堆积和体心立方的生长,即使固体基底是面心立方。最后,我们还证明了六方密堆积的生长受到足够大的体心立方簇出现的条件的限制,这表明存在交叉成核途径。我们的研究结果为纳米尺度效应和固体基底性质对多晶型纳米材料生长的影响提供了深入的了解。