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系统评价 Cu2(pzdc)2L [L = 基于二吡啶的配体] 多孔配位的层柱网络的纹理特性、活化温度和气体吸收。

Systematic evaluation of textural properties, activation temperature and gas uptake of Cu2(pzdc)2L [L = dipyridyl-based ligands] porous coordination pillared-layer networks.

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. 2012 Aug 7;41(29):8922-30. doi: 10.1039/c2dt30749a. Epub 2012 Jun 19.

Abstract

In situ high temperature X-ray diffraction, nitrogen porosimetry and gas adsorption at room temperature were used to elucidate the effect of the degassing or activation temperature on the long-range and micropore textural properties of a series of coordination polymers with pillared-layer structures. Ramp-and-soak thermal gravimetric analysis performed at selected activation temperatures were used to verify the thermal stability of a CPL-n series [Cu(2)(pzdc)(2)L; pzdc = pyrazine-2,3-dicarboxylate; L = 4,4-azopyridine (apy) for CPL-4, 1,2-di-(4-pyridil)-ethylene (bpe) for CPL-5, N-(4-pyridyl)-isonicotinamide (pia) for CPL-6, and 1,2-di-(4-pyridyl)-glycol (dpyg) for CPL-7]. Although the activation temperatures were far below the decomposition point of the complexes, these resulted in significant and unique changes in micropore surface area and volume, even for CPL-4, -5 and -6, which contained pillar ligands with similar dimensions and similar structural long-range order. For the case of CPL-7, however, the framework appeared to be non-porous at any given activation temperature. Pure component equilibrium adsorption data gathered for CO(2), CH(4), and N(2) were used to elucidate the CPL-n materials potential for storage and separations at room temperature. All of the materials exhibited considerable selectivity toward CO(2), particularly at moderate pressures. Meanwhile, CO(2) isosteric heats of adsorption indicated that the pore functionalities arising from the pillar ligands provided similar interactions with the adsorbate in the cases of CPL-4 and -5. For CPL-6, the presence of the carbonyl (C[double bond, length as m-dash]O) group appeared to enhance interactions with CO(2) at low loadings.

摘要

原位高温 X 射线衍射、氮气孔隙率分析和室温气体吸附用于阐明脱气或活化温度对一系列具有支柱层结构的配位聚合物的远程和微孔结构性质的影响。在选定的活化温度下进行的斜坡和浸泡热重分析用于验证 CPL-n 系列[Cu(2)(pzdc)(2)L;pzdc=吡嗪-2,3-二羧酸;pz 为 4,4-联吡啶(apy)用于 CPL-4,1,2-二-(4-吡啶基)-乙烯(bpe)用于 CPL-5,N-(4-吡啶基)异烟酰胺(pia)用于 CPL-6,和 1,2-二-(4-吡啶基)-乙二醇(dpyg)用于 CPL-7]的热稳定性。尽管活化温度远低于配合物的分解点,但这导致微孔表面积和体积发生了显著且独特的变化,即使对于 CPL-4、-5 和 -6 也是如此,它们含有具有相似尺寸和相似结构远程有序的支柱配体。然而,对于 CPL-7,在任何给定的活化温度下,骨架似乎都没有多孔性。收集的 CO(2)、CH(4)和 N(2)的纯组分平衡吸附数据用于阐明 CPL-n 材料在室温下用于存储和分离的潜力。所有材料对 CO(2)都表现出相当大的选择性,特别是在中等压力下。同时,CO(2)的等吸附热表明,在 CPL-4 和 -5 的情况下,支柱配体产生的孔功能与吸附物提供了相似的相互作用。对于 CPL-6,羰基(C[双键,长度为 m-dash]O)基团的存在似乎在低负荷下增强了与 CO(2)的相互作用。

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