State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 10029, China.
Langmuir. 2012 Jun 26;28(25):9849-56. doi: 10.1021/la301553w. Epub 2012 Jun 6.
In the present article, we have developed a facile and rapid method to fabricate a polyelectrolyte multilayer under high gravity field and investigated the difference of mass transfer in the diffusing process between LbL self-assembled technique under high gravity field (HG-LbL) and dipping assembly. Herein, we have employed polyethyleneimine and zinc oxide nanoparticles, which is a well-known UV blocking material with typical absorption properties in the range of 300-400 nm, as building blocks and applied hydrogen bonding as the driving force to construct the multilayer under HG-LbL and dipping assembly. The results show that, compared with dipping assembly, HG-LbL can highly improve the utilization and adsorption efficiency of building blocks by hastening the diffusing process, and meanwhile the resulting multilayer films still achieve comparable quality as those prepared from dipping assembly.
在本文中,我们开发了一种在高重力场下制备聚电解质多层膜的简便快速方法,并研究了高重力场下层层自组装技术(HG-LbL)和浸渍组装过程中扩散过程中传质的差异。在此,我们采用聚乙烯亚胺和氧化锌纳米粒子作为构建块,这是一种众所周知的具有典型吸收特性的紫外线阻挡材料,吸收范围在 300-400nm 之间,并应用氢键作为驱动力在 HG-LbL 和浸渍组装下构建多层膜。结果表明,与浸渍组装相比,HG-LbL 可以通过加速扩散过程,极大地提高构建块的利用率和吸附效率,同时所得多层膜的质量仍与浸渍组装相当。