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在两种无孔多晶型物和高表面积多孔相之间可逆切换的配位网络。

Coordination Network That Reversibly Switches between Two Nonporous Polymorphs and a High Surface Area Porous Phase.

作者信息

Zhu Ai-Xin, Yang Qing-Yuan, Kumar Amrit, Crowley Clare, Mukherjee Soumya, Chen Kai-Jie, Wang Shi-Qiang, O Nolan Daniel, Shivanna Mohana, Zaworotko Michael J

机构信息

Faculty of Chemistry and Chemical Engineering , Yunnan Normal University , Kunming 650500 , China.

Department of Chemical Sciences and Bernal Institute , University of Limerick , Limerick V94 T9PX , Republic of Ireland.

出版信息

J Am Chem Soc. 2018 Nov 21;140(46):15572-15576. doi: 10.1021/jacs.8b08642. Epub 2018 Nov 9.

Abstract

We report a 2-fold interpenetrated primitive cubic (pcu) network X-pcu-5-Zn, [Zn(DMTDC)(dpe)] (HDMTDC = 3,4-dimethylthieno[2,3- b]thiophene-2,5-dicarboxylic acid, dpe = 1,2-di(4-pyridyl)ethylene), that exhibits reversible switching between an as-synthesized "open" phase, X-pcu-5-Zn-α, and two nonporous or "closed" polymorphs, X-pcu-5-Zn-β and X-pcu-5-Zn-γ. There are two unusual features of X-pcu-5-Zn. The first relates to its sorption properties, which reveal that the α form exhibits high CO uptake (ca. 255 cm/g at 195 K) via reversible closed-to-open switching (type F-IV isotherm) of the type desirable for gas and vapor storage; there are only three other reports of porous materials that combine these two features. Second, we could only isolate the β form by activation of the CO loaded α form and it persists through multiple CO adsorption/desorption cycles. We are unaware of a new polymorph having been isolated in such a manner. That the observed phase changes of X-pcu-5-Zn-α occur in single-crystal-to-single-crystal fashion enabled structural characterization of the three forms; γ is a coordination isomer of α and β, both of which are based upon "paddlewheel" clusters.

摘要

我们报道了一种具有两倍互穿结构的原始立方(pcu)网络X-pcu-5-Zn,即[Zn(DMTDC)(dpe)](HDMTDC = 3,4-二甲基噻吩并[2,3-b]噻吩-2,5-二羧酸,dpe = 1,2-二(4-吡啶基)乙烯),它在合成态的“开放”相X-pcu-5-Zn-α与两种无孔或“封闭”的多晶型物X-pcu-5-Zn-β和X-pcu-5-Zn-γ之间表现出可逆转变。X-pcu-5-Zn有两个不同寻常的特征。第一个与它的吸附性质有关,这表明α型通过对气体和蒸汽存储所需的可逆的从封闭到开放的转变(F-IV型等温线)表现出高的CO吸附量(在195 K时约为255 cm/g);仅有另外三篇关于多孔材料的报道兼具这两个特征。其次,我们只能通过对负载CO的α型进行活化来分离出β型,并且它在多个CO吸附/解吸循环中都能保持。我们不知道有新的多晶型物是以这种方式被分离出来的。X-pcu-5-Zn-α所观察到的相变以单晶到单晶的方式发生,这使得能够对这三种晶型进行结构表征;γ是α和β的配位异构体,α和β均基于“桨轮”簇。

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