Research Institute on Membrane Technology, National Research Council, I-87030 Rende, Italy.
ACS Appl Mater Interfaces. 2010 Feb;2(2):459-66. doi: 10.1021/am900701r.
The fabrication of well-defined interfaces is in high demand in many fields of biotechnologies. Here, high-definition membrane-like arrays are developed through the self-assembly of water droplets, which work as natural building blocks for the construction of ordered channels. Solution viscosity together with the dynamics of the water droplets can decide the final formation of three-dimensional well-ordered patterns resembling anodic structures, especially because solvents denser than water are used. Particularly, the polymer solution viscosity is demonstrated to be a powerful tool for control of the mobility of submerged droplets during the microfabrication process. The polymeric patterns are structured at very high levels of organization and exhibit well-established transport-surface property relationships, considered basics for any types of advanced biotechnologies.
在许多生物技术领域中,对定义明确的界面的制造有很高的需求。在这里,通过液滴的自组装开发出了高清晰度的类膜阵列,液滴可作为构建有序通道的天然构建块。溶液的粘度以及液滴的动力学可以决定最终形成类似于阳极结构的三维有序图案,特别是因为使用了比水密度更大的溶剂。特别是,聚合物溶液的粘度被证明是控制微制造过程中浸没液滴迁移率的有力工具。聚合物图案具有非常高的组织水平,并表现出确立的传输-表面特性关系,这被认为是任何类型的先进生物技术的基础。