论文标题
微流体薄膜压力平衡用于研究复杂薄膜的研究
Microfluidic Thin Film Pressure Balance for the Study of Complex Thin Films
论文作者
论文摘要
对独立式液体膜的调查越来越受欢迎,因为它们与许多基本和应用科学问题的相关性。它们构成肥皂泡和泡沫,用作气体传输的膜或生物物理学中的模型膜。更普遍地,它们为调查与界面有关的众多基本问题提供了方便的工具,并在软物质科学中限制了驱动的效果。过去已经开发出了几种方法和设备,以可靠地表征此类膜的稀疏和稳定性,这些薄膜通常是由低粘度,水溶液/分散剂产生的。随着对通过强烈粘弹性和复杂的流体制造的膜的兴趣越来越多,这也可能巩固,需要开发新一代设备,以可靠地管理这些配方所施加的约束。因此,我们在这里提出了一种微流体芯片设计,该设计允许对复杂流体的独立膜的可靠创造,控制和表征。我们提供所有技术细节,并通过选择说明性示例(包括聚合物融化膜和胶凝水凝胶的膜)来证明更大范围的系统的设备功能。
Investigations of free-standing liquid films enjoy an increasing popularity due to their relevance for many fundamental and applied scientific problems. They constitute soap bubbles and foams, serve as membranes for gas transport or as model membranes in biophysics. More generally, they provide a convenient tool for the investigation of numerous fundamental questions related to interface-and confinement-driven effects in soft matter science. Several approaches and devices have been developed in the past to characterise reliably the thinning and stability of such films, which were commonly created from low-viscosity, aqueous solutions/dispersions. With an increasing interest in the investigation of films made from strongly viscoelastic and complex fluids that may also solidify, the development of a new generation of devices is required to manage reliably the constraints imposed by these formulations. We therefore propose here a microfluidic chip design which allows for the reliable creation, control and characterisation of free-standing films of complex fluids. We provide all technical details and we demonstrate the device functioning for a larger range of systems via a selection of illustrative examples, including films of polymer melts and gelling hydrogels.