中性客体在5-尿苷环酸柱状盐共晶中的插层作用。

IF 3.4 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Crystal Growth & Design Pub Date : 2025-02-20 eCollection Date: 2025-03-05 DOI:10.1021/acs.cgd.4c01715
Stuart R Kennedy, Toby J Blundell, Elizabeth F Henderson, Adeline P Miquelot, Jonathan W Steed
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引用次数: 0

摘要

5-尿苷水杨酸(5-USA)的盐在碱性溶剂中形成一系列柱状盐包合物,即三乙胺、哌啶、啉和4-乙基吡啶。三乙胺衍生物是未溶剂化的,而其他盐包括1-3个溶剂分子,分子式为XH+(5-USA-H)-·nX (X = morpholine, n = 1,2,3 (2a - 2c));X = 4-乙基吡啶,n = 1(3)和X =哌啶,n = 2.5(4))。morpholine盐扩展了层状结构,包括1、2或3个客体。5-USA阴离子也可以作为锰(III)的双齿配体,再次形成高度溶剂化的包合阴离子[Mn(5-USA- h)2(Solv)2]-。当与反正离子强烈相互作用时,5-USA阴离子形成一种不寻常的顺式羧酸异构体形式,而morpholinium盐溶剂(H-morpholine)[Mn(5-USA- h)2(morpholine)2]·2(morpholine) (5c)是反式的。该配合物的柔软、塑性晶体逐渐脱溶,失去通道morpholine,最终自发重结晶为5-USA盐二morpholine包合物2b。复杂的氢键,柱状5-USA盐说明了插层材料的设计概念,形成带电的平面层,使电荷平衡的反离子暴露出来,这样层间的客体物质必须被纳入有效地溶剂化带电的部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intercalation of Neutral Guests in Pillared Salt Cocrystals of 5-Ureidosalyclic Acid.

The salts of 5-ureidosalyclic acid (5-USA) form a range of pillared salt inclusion complexes from basic solvents, namely, triethylamine, piperidine, morpholine, and 4-ethylpyridine. The triethylamine derivative is unsolvated, while the other salts include 1-3 solvent molecules of formula XH+(5-USA-H)-·nX (X = morpholine, n = 1, 2, and 3 (2a - 2c); X = 4-ethylpyridine, n = 1 (3) and X = piperidine, n = 2.5 (4)). The morpholine salt expands the layered structure to include 1, 2, or 3 guests. The 5-USA anion can also act as a bidentate ligand for manganese(III), again forming highly solvated inclusion complex anions [Mn(5-USA-H)2(Solv)2]-. When interacting strongly with the countercation, the 5-USA anions adopt an unusual cis carboxylate isomer form, whereas the morpholinium salt solvate (H-morpholine)[Mn(5-USA-H)2(morpholine)2]·2(morpholine) (5c) is trans. The soft, plastic crystals of this complex gradually desolvate, losing channel morpholine and ultimately spontaneously recrystallizing as the 5-USA salt dimorpholine inclusion complex 2b. The complex hydrogen-bonded, pillared 5-USA salts illustrate a design concept for intercalated materials of forming charged, planar layers that leave the charge-balancing counterion exposed, such that interlayer guest species must be incorporated to effectively solvate the charged moieties.

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来源期刊
Crystal Growth & Design
Crystal Growth & Design 化学-材料科学:综合
CiteScore
6.30
自引率
10.50%
发文量
650
审稿时长
1.9 months
期刊介绍: The aim of Crystal Growth & Design is to stimulate crossfertilization of knowledge among scientists and engineers working in the fields of crystal growth, crystal engineering, and the industrial application of crystalline materials. Crystal Growth & Design publishes theoretical and experimental studies of the physical, chemical, and biological phenomena and processes related to the design, growth, and application of crystalline materials. Synergistic approaches originating from different disciplines and technologies and integrating the fields of crystal growth, crystal engineering, intermolecular interactions, and industrial application are encouraged.
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