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首页> 外文期刊>ACS applied materials & interfaces >Responsive Nanoporous Membranes with Size Selectivity and Charge Rejection from Self-Assembly of Polyelectrolyte 'Hairy' Nanoparticles
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Responsive Nanoporous Membranes with Size Selectivity and Charge Rejection from Self-Assembly of Polyelectrolyte 'Hairy' Nanoparticles

机译:响应纳米多孔膜,具有尺寸选择性和电荷抑制聚电解质“毛状”纳米粒子的自组装

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摘要

We report the preparation and characterization of charged nanoporous membranes by self-assembly of "hairy" silica nanoparticles (HNPs) functionalized with polyelectrolyte copolymer brushes. We show that HNP membranes possess high water flux, have well-defined pore sizes, and rejection up to 80% of charged species in solution. The properties of these membranes can be tuned by controlling the length and composition of polymer brushes and the electrolyte concentration in solution. We demonstrate that membrane pore sizes undergo changes of up to 40% in response to changes in the ionic strength of the salt solution. Using MD computer simulations of a coarse-grained model, we link these tunable properties to the conformations of polymer chains in the spaces between randomly packed HNPs. As polymer length increases, the polymers fill the interparticle gaps, and the pore size decreases markedly. On the basis of their straightforward fabrication and tunable properties, HNP membranes may find applications in size- and charge-selective separations, water desalination, and responsive devices.
机译:通过用聚电解质共聚物刷官能化的“毛状”二氧化硅纳米粒子(HNP)的自组装报告带电纳米多孔膜的制备和表征。我们表明HNP膜具有高水量,具有明确定义的孔径,并在溶液中排出高达80%的带电物种。通过控制聚合物刷的长度和组成和溶液中的电解质浓度,可以调节这些膜的性质。我们证明,膜孔尺寸响应于盐溶液的离子强度的变化而经历高达40%的变化。使用粗粒模型的MD计算机仿真,我们将这些可调性与随机包装的HNP之间的空间中的聚合物链的构象联系起来。随着聚合物长度的增加,聚合物填充颗粒间隙,并且孔径明显降低。在其直接的制造和可调谐性质的基础上,HNP膜可以在尺寸和充电选择性分离,水脱盐和响应装置中找到应用。

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