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Tunable molecular separation by nanoporous membranes

机译:纳米多孔膜可调节的分子分离

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摘要

Metal-organic frameworks offer tremendous potential for efficient separation of molecular mixtures. Different pore sizes and suitable functionalizations of the framework allow for an adjustment of the static selectivity. Here we report membranes which offer dynamic control of the selectivity by remote signals, thus enabling a continuous adjustment of the permeate flux. This is realized by assembling linkers containing photoresponsive azobenzene-side-groups into monolithic, crystalline membranes of metal-organic frameworks. The azobenzene moieties can be switched from the trans to the cis configuration and vice versa by irradiation with ultraviolet or visible light, resulting in a substantial modification of the membrane permeability and separation factor. The precise control of the cis:trans azobenzene ratio, for example, by controlled irradiation times or by simultaneous irradiation with ultraviolet and visible light, enables the continuous tuning of the separation. For hydrogen:carbon-dioxide, the separation factor of this smart membrane can be steplessly adjusted between 3 and 8.
机译:金属有机骨架为分子混合物的有效分离提供了巨大的潜力。骨架的不同孔径和合适的官能化可调节静态选择性。在这里,我们报道了通过远程信号动态控制选择性的膜,从而能够连续调节渗透通量。这是通过将包含光响应性偶氮苯侧基的连接基组装到金属有机骨架的整体式结晶膜中来实现的。通过用紫外线或可见光照射,可以使偶氮苯部分从反式转变为顺式构型,反之亦然,从而大大改变了膜的渗透性和分离系数。精确控制顺式:反式偶氮苯的比例,例如通过控制照射时间或同时照射紫外线和可见光,可以实现分离的连续调节。对于氢气:二氧化碳,该智能膜的分离系数可以在3到8之间无级调节。

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