Mahynski Nathan A, Kumar Sanat K, Panagiotopoulos Athanassios Z
Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ 08544, USA.
Soft Matter. 2015 Jan 14;11(2):280-9. doi: 10.1039/c4sm02191f.
Recent work [Mahynski et al., Nat. Commun., 2014, 5, 4472] has demonstrated that the addition of long linear homopolymers thermodynamically biases crystallizing hard-sphere colloids to produce the hexagonal close-packed (HCP) polymorph over the closely related face-centered cubic (FCC) structure when the polymers and colloids are purely repulsive. In this report, we investigate the effects of thermal interactions on each crystal polymorph to explore the possibility of stabilizing the FCC crystal structure over the HCP. We find that the HCP polymorph remains at least as stable as its FCC counterpart across the entire range of interactions we explored, where interactions were quantified by the reduced second virial coefficient, -1.50 < B < 1.01. This metric conveniently characterizes the crossover from entropically to energetically dominated systems at B ≈ 0. While the HCP relies on its octahedral void arrangement for enhanced stability when B > 0, its tetrahedral voids produce a similar effect when B < 0 (i.e. when energetics dominate). Starting from this, we derive a mean-field expression for the free energy of an infinitely-dilute polymer adsorbed in the crystal phase for nonzero B. Our results reveal that co-solute biasing of a single polymorph can still be observed in experimentally realizable scenarios when the colloids and polymers have attractive interactions, and provide a possible explanation for the experimental finding that pure FCC crystals are elusive in these binary mixtures.
近期的研究工作[Mahynski等人,《自然·通讯》,2014年,第5卷,第4472页]表明,当聚合物和胶体之间纯粹为排斥作用时,添加长线性均聚物会在热力学上使结晶硬球胶体产生六方密堆积(HCP)多晶型,而非与其密切相关的面心立方(FCC)结构。在本报告中,我们研究了热相互作用对每种晶体多晶型的影响,以探索使FCC晶体结构比HCP更稳定的可能性。我们发现,在所探索的整个相互作用范围内,HCP多晶型至少与其FCC对应物一样稳定,其中相互作用通过约化第二维里系数来量化,-1.50 < B < 1.01。该指标方便地刻画了在B ≈ 0时从熵主导系统到能量主导系统的转变。当B > 0时,HCP依靠其八面体空隙排列来增强稳定性,而当B < 0(即能量起主导作用时),其四面体空隙会产生类似效果。基于此,我们推导了非零B时吸附在晶相中的无限稀释聚合物自由能的平均场表达式。我们的结果表明,当胶体和聚合物具有吸引相互作用时,在实验可实现的情况下仍能观察到单一多晶型的共溶质偏析,并为在这些二元混合物中纯FCC晶体难以获得这一实验发现提供了一种可能的解释。