Danwanichakul Panu
Department of Chemical Engineering, Faculty of Engineering, Thammasat University, 99 Moo 18 Phaholyothin Road, Khlong-Luang, Pathum Thani 12120, Thailand.
Biomed Res Int. 2014;2014:278098. doi: 10.1155/2014/278098. Epub 2014 Jul 16.
The modified triangular-well potential model was applied to incorporate the effect of surface energy on the adsorption of particles or proteins on energetically heterogeneous surfaces. The method is convenient in simulating the adsorption on heterogeneous surface of which different region possesses different free energy. Spherical particles with attractive forces were added on the surface and underwent surface diffusion before they were quenched in place. It was seen that the ratio of surface energies of two regions had to be greater than 10 in order to simulate the adsorption in which the particles were selectively adsorbed on a favorable area. At a fixed ratio of surface energies, the obtained structures were similar. If the ratio was less than 10, the probability of adsorption on any site on the surface was not much different so the adsorption would be homogeneous adsorption. The method, thus, could be applied widely to simulate the adsorption of various conditions.
修正的三角阱势模型被用于纳入表面能对颗粒或蛋白质在能量异质表面上吸附的影响。该方法便于模拟在不同区域具有不同自由能的异质表面上的吸附。具有吸引力的球形颗粒被添加到表面,并在原位淬灭之前经历表面扩散。可以看出,为了模拟颗粒选择性吸附在有利区域的吸附,两个区域的表面能之比必须大于10。在固定的表面能比下,得到的结构相似。如果该比值小于10,表面上任何位点的吸附概率差异不大,因此吸附将是均匀吸附。因此,该方法可广泛应用于模拟各种条件下的吸附。