论文标题
具有可编程水和离子通道的二维自适应膜
Two-dimensional adaptive membranes with programmable water and ionic channels
论文作者
论文摘要
膜本质上是普遍存在的,其主要功能包括自适应滤波和化学和分子物种的选择性运输。对于细胞功能至关重要,它们在科学和技术的许多领域也是基础。特别重要的是自适应和可编程膜,可以根据环境改变其渗透性或选择性。在这里,我们探讨了这种生物学功能在人工膜中的实现,并展示了氧化石墨烯和多胺大分子的二维自组装异质结构,形成了一个离子通道网络,这些网络表现出受调节的水和单价离子的调节性。这种渗透性可以通过变化pH或某些离子的存在来调节。与传统的膜不同,这里报告的调节机制依赖于膜内部成分与离子之间的特定相互作用。这允许制造具有可编程,预先确定的渗透性和选择性的膜,该膜受组件的选择,其构象和充电状态的控制。
Membranes are ubiquitous in nature with primary functions that include adaptive filtering and selective transport of chemical and molecular species. Being critical to cellular functions, they are also fundamental in many areas of science and technology. Of particular importance are the adaptive and programmable membranes that can change their permeability or selectivity depending on the environment. Here, we explore implementation of such biological functions in artificial membranes and demonstrate two dimensional self assembled heterostructures of graphene oxide and polyamine macromolecules, forming a network of ionic channels that exhibit regulated permeability of water and monovalent ions. This permeability can be tuned by a change of pH or the presence of certain ions. Unlike traditional membranes, the regulation mechanism reported here relies on specific interactions between the membranes internal components and ions. This allows fabrication of membranes with programmable, predetermined permeability and selectivity, governed by the choice of components, their conformation and their charging state.