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首页> 外文期刊>Science Advances >Ultrafast selective transport of alkali metal ions in metal organic frameworks with subnanometer pores
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Ultrafast selective transport of alkali metal ions in metal organic frameworks with subnanometer pores

机译:具有亚纳米孔的金属有机骨架中碱金属离子的超快速选择性迁移

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Porous membranes with ultrafast ion permeation and high ion selectivity are highly desirable for efficient mineral separation, water purification, and energy conversion, but it is still a huge challenge to efficiently separate monatomic ions of the same valence and similar sizes using synthetic membranes. We report metal organic framework (MOF) membranes, including ZIF-8 and UiO-66 membranes with uniform subnanometer pores consisting of angstrom-sized windows and nanometer-sized cavities for ultrafast selective transport of alkali metal ions. The angstrom-sized windows acted as ion selectivity filters for selection of alkali metal ions, whereas the nanometer-sized cavities functioned as ion conductive pores for ultrafast ion transport. The ZIF-8 and UiO-66 membranes showed a LiCl/RbCl selectivity of ~4.6 and ~1.8, respectively, which are much greater than the LiCl/RbCl selectivity of 0.6 to 0.8 measured in traditional porous membranes. Molecular dynamics simulations suggested that ultrafast and selective ion transport in ZIF-8 was associated with partial dehydration effects. This study reveals ultrafast and selective transport of monovalent ions in subnanometer MOF pores and opens up a new avenue to develop unique MOF platforms for efficient ion separations in the future.
机译:对于有效的矿物分离,水净化和能量转换,具有超快离子渗透性和高离子选择性的多孔膜是非常需要的,但是使用合成膜有效分离具有相同价数和相似尺寸的单原子离子仍然是巨大的挑战。我们报告了金属有机骨架(MOF)膜,包括ZIF-8和UiO-66膜,该膜具有均匀的亚纳米孔,该孔由埃大小的窗口和纳米大小的腔组成,可用于碱金属离子的超快速选择性运输。埃大小的窗口充当离子选择性过滤器,用于选择碱金属离子,而纳米大小的空腔充当离子传导孔,用于超快的离子传输。 ZIF-8和UiO-66膜的LiCl / RbCl选择性分别为〜4.6和〜1.8,远高于传统多孔膜中测得的LiCl / RbCl选择性0.6-0.8。分子动力学模拟表明,ZIF-8中超快和选择性的离子转运与部分脱水作用有关。这项研究揭示了亚价MOF孔中单价离子的超快和选择性运输,并开辟了一条新的途径来开发独特的MOF平台,以便将来进行有效的离子分离。

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