Dullens Roel P A, Aarts Dirk G A L, Kegel Willem K
Van't Hoff Laboratory for Physical and Colloid Chemistry, Debye Institute, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Proc Natl Acad Sci U S A. 2006 Jan 17;103(3):529-31. doi: 10.1073/pnas.0507052103. Epub 2006 Jan 9.
We report the direct measurement of thermodynamic properties of colloidal hard spheres by optical microscopy. By using confocal microscopy, we obtain three-dimensional snapshots of a colloidal hard-sphere suspension over a wide range of densities. From these snapshots, the available volume to insert an additional sphere and the surface area of that volume are determined, which are directly related to the thermodynamics of the system. This procedure enables us to measure in a direct and noninterfering way, in principle, all thermodynamic properties, here demonstrated for the pressure, the chemical potential, and the free-energy density of a colloidal hard-sphere suspension. The "visual" determination of thermodynamic quantities opens up the possibility to experimentally study the relation between thermodynamics and geometry in real space beyond the hard-sphere potential.
我们报告了通过光学显微镜对胶体硬球热力学性质的直接测量。利用共聚焦显微镜,我们在很宽的密度范围内获得了胶体硬球悬浮液的三维快照。从这些快照中,确定了用于插入额外球体的可用体积及其表面积,它们与系统的热力学直接相关。该方法原则上使我们能够以直接且无干扰的方式测量所有热力学性质,这里展示了对胶体硬球悬浮液的压力、化学势和自由能密度的测量。热力学量的“可视化”测定为实验研究硬球势之外真实空间中热力学与几何之间的关系开辟了可能性。