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二氧化碳在Cu₂(pzdc)₂(bpy)多孔配位聚合物上的滞后吸附及伴随的骨架畸变

Hysteretic adsorption of CO₂ onto a Cu₂(pzdc)₂(bpy) porous coordination polymer and concomitant framework distortion.

作者信息

Riascos-Rodríguez Karina, Schroeder Aaron J, Arend Michael R, Evans Paul G, Hernández-Maldonado Arturo J

机构信息

Department of Chemical Engineering, University of Puerto Rico-Mayagüez Campus, Mayagüez, PR 00681-9000, Puerto Rico.

出版信息

Dalton Trans. 2014 Jul 28;43(28):10877-84. doi: 10.1039/c4dt00878b.

DOI:10.1039/c4dt00878b
PMID:24901071
Abstract

The present study focuses on the long-range structural changes that occur in the porous coordination polymer Cu2(pzdc)2(bpy) (pzdc = pyrazine-2,3-dicarboxylate, bpy = 4,4'-bipyridine), also known as CPL-2, upon adsorption of CO2 at 25 °C and up to 7 atm. The structural data were gathered using in situ diffraction studies. CPL-2 exhibited an unexpected hysteretic adsorption-desorption process. The onset of hysteresis occurs at a pressure where full occupancy of the volume of the CPL-2 galleries is achieved while the framework retains a structure similar to what is observed under ambient conditions. Moreover, the onset occurs at a CO2 partial pressure larger than 2 atm and could be related to a combination of adsorbate-adsorbent interactions and forces exerted onto the CPL-2 framework. Pore volumes estimated from fits of the Dubinin-Astakhov isotherm model against the CO2 desorption data gathered at 25 and -78.5 °C, respectively, provided further evidence of the aforementioned CPL-2 framework changes. These findings are of relevance to the understanding of adsorption processes in metal organic frameworks or coordination polymers under conditions that are of relevance to gas capture at industrial scale.

摘要

本研究聚焦于多孔配位聚合物Cu2(pzdc)2(bpy)(pzdc = 吡嗪 - 2,3 - 二羧酸酯,bpy = 4,4'-联吡啶),也称为CPL - 2,在25℃及高达7个大气压下吸附CO2时发生的远程结构变化。结构数据通过原位衍射研究收集。CPL - 2表现出意想不到的滞后吸附 - 解吸过程。滞后现象的起始发生在一个压力点,此时CPL - 2孔道体积被完全占据,而骨架保持与在环境条件下观察到的结构相似。此外,起始发生在CO2分压大于2个大气压时,可能与吸附质 - 吸附剂相互作用以及施加在CPL - 2骨架上的力的组合有关。分别根据在25℃和 - 78.℃收集的CO2解吸数据,用杜宾宁 - 阿斯塔霍夫等温线模型拟合估算的孔体积,为上述CPL - 2骨架变化提供了进一步证据。这些发现对于理解在与工业规模气体捕获相关的条件下金属有机骨架或配位聚合物中的吸附过程具有重要意义。 5

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