Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR, China.
Science. 2012 Oct 5;338(6103):87-90. doi: 10.1126/science.1224763.
The nucleation process is crucial to many phase transitions, but its kinetics are difficult to predict and measure. We superheated and melted the interior of thermal-sensitive colloidal crystals and investigated by means of video microscopy the homogeneous melting at single-particle resolution. The observed nucleation precursor was local particle-exchange loops surrounded by particles with large displacement amplitudes rather than any defects. The critical size, incubation time, and shape and size evolutions of the nucleus were measured. They deviate from the classical nucleation theory under strong superheating, mainly because of the coalescence of nuclei. The superheat limit agrees with the measured Born and Lindemann instabilities.
成核过程对许多相变至关重要,但它的动力学很难预测和测量。我们使热敏胶体晶体的内部过热处理和熔化,并通过视频显微镜以单粒子分辨率研究了均匀熔化。观察到的成核前体是局部的粒子交换环,周围是具有大位移幅度的粒子,而不是任何缺陷。测量了核的临界尺寸、潜伏期以及形状和尺寸的演变。它们偏离了强过热处理下的经典成核理论,主要是因为核的合并。过热度极限与测量的玻恩和林德曼不稳定性一致。