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通过温度响应旋转动力学在霍夫曼型金属有机框架中实现可切换的氙/氪选择性

Switchable Xe/Kr Selectivity in a Hofmann-Type Metal-Organic Framework via Temperature-Responsive Rotational Dynamics.

作者信息

Kim Hyojin, Choe Jong Hyeak, Kang Minjung, Kang Dong Won, Yun Hongryeol, Youn Jeongwon, Lee Weon-Gyu, Lee Jung-Hoon, Hong Chang Seop

机构信息

Department of Chemistry, Korea University, Seoul, 02841, Republic of Korea.

Department of Chemistry, The University of Chicago, Chicago, IL, 60637, USA.

出版信息

Small. 2023 Aug;19(35):e2301905. doi: 10.1002/smll.202301905. Epub 2023 Apr 24.

Abstract

The development of adsorbents for Kr and Xe separation is essential to meet industrial demands and for energy conservation. Although a number of previous studies have focused on Xe-selective adsorbents, stimuli-responsive Xe/Kr-selective adsorbents still remain underdeveloped. Herein, a Hofmann-type framework Co(DABCO)[Ni(CN) ] (referred to as CoNi-DAB; DABCO = 1,4-diazabicyclo[2,2,2]octane) that provides a temperature-dependent switchable Xe/Kr separation performance is reported. CoNi-DAB showed high Kr/Xe (0.8/0.2) selectivity with significant Kr adsorption at 195 K as well as high Xe/Kr (0.2/0.8) selectivity with superior Xe adsorption at 298 K. Such adsorption features are associated with the temperature-dependent rotational configuration of the DABCO ligand, which affects the kinetic gate-opening temperature of Xe and Kr. The packing densities of Xe (2.886 g cm at 298 K) and Kr (2.399 g  cm at 195 K) inside the framework are remarkable and comparable with those of liquid Xe (3.057 g cm ) and liquid Kr (2.413 g cm ), respectively. Breakthrough experiments confirm the temperature-dependent reverse separation performance of CoNi-DAB at 298 K under dry and wet (88% relative humidity) conditions and at 195 K under dry conditions. The unique adsorption behavior is also verified through van der Waals (vdW)-corrected density functional theory (DFT) calculations and nudged elastic band (NEB) simulations.

摘要

开发用于氪和氙分离的吸附剂对于满足工业需求和节能至关重要。尽管先前的许多研究都集中在氙选择性吸附剂上,但刺激响应型氙/氪选择性吸附剂仍未得到充分发展。在此,报道了一种霍夫曼型骨架Co(DABCO)[Ni(CN)₄](称为CoNi-DAB;DABCO = 1,4-二氮杂双环[2,2,2]辛烷),它具有随温度变化的可切换氙/氪分离性能。CoNi-DAB在195 K时显示出高的氪/氙(0.8/0.2)选择性以及显著的氪吸附,在298 K时显示出高的氙/氪(0.2/0.8)选择性以及优异的氙吸附。这种吸附特性与DABCO配体随温度变化的旋转构型有关,这会影响氙和氪的动力学开闸温度。框架内氙(298 K时为2.886 g/cm³)和氪(195 K时为2.399 g/cm³)的堆积密度非常显著,分别与液态氙(3.057 g/cm³)和液态氪(2.413 g/cm³)相当。突破实验证实了CoNi-DAB在298 K的干燥和潮湿(88%相对湿度)条件下以及195 K的干燥条件下随温度变化的反向分离性能。通过范德华(vdW)校正的密度泛函理论(DFT)计算和推挤弹性带(NEB)模拟也验证了这种独特的吸附行为。

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