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18-冠-6与M[HSO₄]ₙ盐(M = NH₄⁺、K⁺、Sr²⁺且n = 1、2)配合物的溶液法和固态法制备以及溶剂化/去溶剂化过程和晶体多晶型的研究

Solution and solid-state preparation of 18-crown[6] complexes with M[HSO4]n salts (M = NH4+, K+, Sr2+ and n = 1, 2) and an investigation of solvation/desolvation processes and crystal polymorphism.

作者信息

Braga Dario, Gandolfi Massimo, Lusi Matteo, Paolucci Demis, Polito Marco, Rubini Katia, Grepioni Fabrizia

机构信息

Dipartimento di Chimica G. Ciamician, Università di Bologna, Via Selmi 2, 40126 Bologna, Italy.

出版信息

Chemistry. 2007;13(18):5249-55. doi: 10.1002/chem.200601850.

Abstract

18-Crown[6] ether has been used to prepare a new class of organic-inorganic complexes of general formula 18-crown[6]MHSO(4) (where M = NH(4) (+), K(+), Sr(2+) and n = 1, 2) by reacting directly in solution or in the solid state the crown ether 18-crown[6] with inorganic salts such as [NH(4)][HSO(4)], K[HSO(4)], and SrHSO(4). The structures of 18-crown[6][NH(4)][HSO(4)]2 H(2)O (12 H(2)O), 18-crown[6][NH(4)][HSO(4)] (1), 18-crown[6]K[HSO(4)]2 H(2)O (22 H(2)O), 18-crown[6]K[HSO(4)] (2), and 18-crown[6]SrHSO(4) (3) have been characterized by single-crystal X-ray diffraction. The reversible water loss in compounds 12 H(2)O and 22 H(2)O leads to formation of the corresponding anhydrous phases 18-crown[6][NH(4)][HSO(4)] (1), and 18-crown[6]K[HSO(4)] (2), which undergo, on further heating, enantiotropic solid-solid transitions very likely associated with the on-set of a solid state dynamical process. Similar high-temperature behavior is shown by 18-crown[6]SrHSO(4) (3). The dehydration and phase-transition processes have been investigated by differential scanning calorimetry (DSC), thermogravimetric analysis (TGA) and variable temperature X-ray powder diffraction.

摘要

18-冠-6醚已被用于通过在溶液或固态中将冠醚18-冠-6与无机盐如[NH₄][HSO₄]、K[HSO₄]和Sr[HSO₄]₂直接反应,制备通式为18-冠-6M[HSO₄]ₙ(其中M = NH₄⁺、K⁺、Sr²⁺且n = 1、2)的一类新型有机-无机配合物。通过单晶X射线衍射对18-冠-6[NH₄][HSO₄]·2H₂O(1·2H₂O)、18-冠-6[NH₄][HSO₄](1)、18-冠-6K[HSO₄]·2H₂O(2·2H₂O)、18-冠-6K[HSO₄](2)和18-冠-6Sr[HSO₄]₂(3)的结构进行了表征。化合物1·2H₂O和2·2H₂O中可逆的水分流失导致形成相应的无水相18-冠-6[NH₄][HSO₄](1)和18-冠-6K[HSO₄](2),进一步加热时,它们会发生对映体固-固转变,很可能与固态动力学过程的开始有关。化合物18-冠-6Sr[HSO₄]₂(3)也表现出类似的高温行为。通过差示扫描量热法(DSC)、热重分析(TGA)和变温X射线粉末衍射对脱水和相变过程进行了研究。

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