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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >An insight into the effect of azobenzene functionalities studied in UiO-66 frameworks for low energy CO2 capture and CO2/N-2 membrane separation
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An insight into the effect of azobenzene functionalities studied in UiO-66 frameworks for low energy CO2 capture and CO2/N-2 membrane separation

机译:对UIO-66框架中偶氮苯函数的效果见解,用于低能量CO2捕获和CO2 / N-2膜分离

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摘要

In this paper, a simple approach to study the fundamental aspect of the light-responsive metal-organic framework (MOF) in UiO-66 topology through a mixed-ligand approach is reported. Apart from change in the structural properties, the loading of an azobenzene linker inside the framework also affects the CO2 light-responsive properties and CO2/N-2 selectivity which could help to design future low-energy CO2 adsorbents. Further study to incorporate MOFs into mixed matrix membranes using PIM-1 as the polymer matrix also indicates the benefits of having a higher azobenzene loading in the MOF to enhance the CO2/N-2 separation performance since it can improve the separation performance that could not be obtained in non-functionalized fillers.
机译:本文报道了一种简单的方法,以研究通过混合配体方法研究UIO-66拓扑中的光响应金属 - 有机框架(MOF)的基本方面。 除了结构性的变化外,框架内的偶氮苯联基的装载还会影响CO2光响应性和CO2 / N-2选择性,这有助于设计未来的低能量CO2吸附剂。 进一步研究使用PIM-1将MOF掺入混合基质膜作为聚合物基质也表明在MOF中具有更高的偶氮苯负载以增强CO 2 / N-2分离性能的益处,因为它可以改善不能提高不可能的分离性能 在非官能化填料中获得。

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