Shin Homin, Schweizer Kenneth S
Department of Materials Science and Frederick Seitz Materials Research Laboratory, University of Illinois, Urbana, IL 61801, USA.
Soft Matter. 2014 Jan 14;10(2):262-74. doi: 10.1039/c3sm52094c.
We study the rich crystalline phase behavior of amphiphilic spherical Janus colloids using a new formulation of self-consistent phonon theory that includes coupled translational and rotational entropic and enthalpic contributions to the free energy. In contrast to homogeneous spheres, broken rotational symmetry can result in more exotic crystals that possess distinct orientational patterns, and also plastic crystals. Ground states are identified based on the compatibility between the patch geometry of particles (e.g., patch coverage, number, shape) and lattice symmetry. We derive the explicit coupled self-consistent equations for translational and rotational localization parameters for effectively 2-dimensional dense monolayers of Janus crystals. The equations are numerically solved for a given crystal symmetry, thermodynamic state, and patch orientational order, and the thermodynamic stability of different phases is determined. For hexagonal packing, we predict with increasing temperature or decreasing attraction strength the possibility of a phase sequence of maximally bonded zigzag stripe, trimer, and rotationally disordered plastic crystal phases (or a phase sequence of trimer, dimer, and plastic crystal), which depends sensitively on particle chemical composition (Janus balance) and pressure. The role of rotational entropy in stabilizing the intermediate trimer (or dimer) phase at intermediate temperatures and high pressures is discussed in detail. Evolution of the center-of-mass vibrational and rotational amplitudes with thermodynamic state and Janus balance is also determined.
我们使用一种自洽声子理论的新公式来研究两亲性球形Janus胶体丰富的晶相行为,该公式包括对自由能的耦合平动和转动熵及焓贡献。与均匀球体不同,旋转对称性的破缺会导致具有独特取向模式的更奇特晶体,以及塑性晶体。基于粒子的补丁几何形状(例如,补丁覆盖率、数量、形状)与晶格对称性之间的兼容性来确定基态。我们推导了Janus晶体有效二维致密单层的平动和转动局域化参数的显式耦合自洽方程。针对给定的晶体对称性、热力学状态和补丁取向序对方程进行数值求解,并确定不同相的热力学稳定性。对于六方堆积,我们预测随着温度升高或吸引力强度降低,会出现最大键合之字形条纹、三聚体和转动无序塑性晶体相的相序列可能性(或三聚体、二聚体和塑性晶体的相序列),这敏感地取决于粒子化学成分(Janus平衡)和压力。详细讨论了转动熵在中间温度和高压下稳定中间三聚体(或二聚体)相中的作用。还确定了质心振动和转动振幅随热力学状态和Janus平衡的演变。