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软质多孔配位网络中C₂H₂/CO和C₂H₂/C₂H₄的交叉吸附

Crossover Sorption of C H /CO and C H /C H in Soft Porous Coordination Networks.

作者信息

Shivanna Mohana, Otake Ken-Ichi, Hiraide Shotaro, Fujikawa Takao, Wang Ping, Gu Yifan, Ashitani Hirotaka, Kawaguchi Shogo, Kubota Yoshiki, Miyahara Minoru T, Kitagawa Susumu

机构信息

Institute for Integrated Cell-Material Sciences, Kyoto University Institute for Advanced Study, Kyoto University Yoshida Ushinomiya-cho, Sakyo-ku, Kyoto, 606-8501, Japan.

Department of Chemical Engineering, Kyoto University Nishikyo, Kyoto, 615-8510, Japan.

出版信息

Angew Chem Int Ed Engl. 2023 Sep 25;62(39):e202308438. doi: 10.1002/anie.202308438. Epub 2023 Aug 21.

DOI:10.1002/anie.202308438
PMID:37534579
Abstract

Porous sorbents are materials that are used for various applications, including storage and separation. Typically, the uptake of a single gas by a sorbent decreases with temperature, but the relative affinity for two similar gases does not change. However, in this study, we report a rare example of "crossover sorption," in which the uptake capacity and apparent affinity for two similar gases reverse at different temperatures. We synthesized two soft porous coordination polymers (PCPs), [Zn (L1)(L2) ] (PCP-1) and [Zn (L1)(L3) ] (PCP-2) (L1= 1,4-bis(4-pyridyl)benzene, L2=5-methyl-1,3-di(4-carboxyphenyl)benzene, and L3=5-methoxy-1,3-di(4-carboxyphenyl)benzene). These PCPs exhibits structural changes upon gas sorption and show the crossover sorption for both C H /CO and C H /C H , in which the apparent affinity reverse with temperature. We used in situ gas-loading single-crystal X-ray diffraction (SCXRD) analysis to reveal the guest inclusion structures of PCP-1 for C H , CO , C H , and C H gases at various temperatures. Interestingly, we observed three-step single-crystal to single-crystal (sc-sc) transformations with the different loading phases under these gases, providing insight into guest binding positions, nature of host-guest or guest-guest interactions, and their phase transformations upon exposure to these gases. Combining with theoretical investigation, we have fully elucidated the crossover sorption in the flexible coordination networks, which involves a reversal of apparent affinity and uptake of similar gases at different temperatures. We discovered that this behaviour can be explained by the delicate balance between guest binding and host-guest and guest-guest interactions.

摘要

多孔吸附剂是用于各种应用的材料,包括储存和分离。通常,吸附剂对单一气体的吸附量随温度降低,但对两种相似气体的相对亲和力不变。然而,在本研究中,我们报道了一个罕见的“交叉吸附”例子,其中两种相似气体的吸附容量和表观亲和力在不同温度下会发生反转。我们合成了两种软质多孔配位聚合物(PCP),[Zn (L1)(L2) ](PCP-1)和[Zn (L1)(L3) ](PCP-2)(L1 = 1,4-双(4-吡啶基)苯,L2 = 5-甲基-1,3-二(4-羧基苯基)苯,L3 = 5-甲氧基-1,3-二(4-羧基苯基)苯)。这些PCP在气体吸附时表现出结构变化,并对CH /CO和CH /CH 均表现出交叉吸附,其中表观亲和力随温度反转。我们使用原位气体加载单晶X射线衍射(SCXRD)分析来揭示PCP-1在不同温度下对CH 、CO 、CH 和CH 气体的客体包合结构。有趣的是,我们观察到在这些气体下不同加载阶段的三步单晶到单晶(sc-sc)转变,这为客体结合位置、主客体或客体间相互作用的性质以及它们在暴露于这些气体时的相变提供了深入了解。结合理论研究,我们充分阐明了柔性配位网络中的交叉吸附,这涉及不同温度下相似气体表观亲和力的反转和吸附量的变化。我们发现这种行为可以通过客体结合与主客体和客体间相互作用之间的微妙平衡来解释。

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