Li Jinhui, Xu Zuxiang, Xiao Ying, Gao Guorong, Chen Jing, Yin Jingbo, Fu Jun
Department of Polymer Materials, School of Materials Science and Engineering, Shanghai University, Nanchen Road 333, Shanghai 200444, China.
J Mater Chem B. 2018 Jan 14;6(2):257-264. doi: 10.1039/c7tb02904g. Epub 2017 Dec 12.
Stimulus-responsive hydrogels are assembled into soft devices that transform their shape upon external stimuli. It is very important to understand the macroscopic assembly mechanisms and to modulate the interface stability of assemblies. In this study, polyelectrolyte hydrogels with outstanding mechanical performances and opposite charges were assembled into soft devices via electrostatic association. The interface strength could be tuned by varying the net charge density, which depends on the concentration of charged/chargeable monomers, the pH of the buffer solution, and the ionic strength of the solution. We propose that charge screening at the interface by free counterions causes a reduction of interface strength, whereas charge redistribution is helpful to strengthen the interface of the assemblies. The understanding of macroscopic assembly mechanisms provides significant guidelines for designing novel soft transducers and drivers and engineering their interface strength.
刺激响应水凝胶被组装成在外部刺激下会改变形状的软设备。了解宏观组装机制并调节组件的界面稳定性非常重要。在本研究中,具有出色机械性能且带相反电荷的聚电解质水凝胶通过静电缔合被组装成软设备。界面强度可以通过改变净电荷密度来调节,净电荷密度取决于带电/可充电单体的浓度、缓冲溶液的pH值以及溶液的离子强度。我们提出,自由抗衡离子在界面处的电荷屏蔽会导致界面强度降低,而电荷重新分布有助于增强组件的界面。对宏观组装机制的理解为设计新型软传感器和驱动器以及设计它们的界面强度提供了重要指导。