NMR Crystallization: In-Situ NMR Strategies for Monitoring the Evolution of Crystallization Processes

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Colan E Hughes, Naomi V. Ratnasingam, Andrew Williams, Erwan Benhenou, Rhian Patterson, Kenneth D M Harris
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引用次数: 0

Abstract

We present a discussion of the range of NMR techniques that have been utilized for in-situ monitoring of crystallization processes, highlighting the opportunities that now exist for exploiting the versatility of NMR techniques to reveal insights into the changes that occur in both the solid phase and the liquid phase as a function of time during crystallization processes from solution. New results are presented on: (i) crystallization of glycine from aqueous solution at low temperature, revealing the relatively long-lived existence of a pure phase of the highly meta-stable β polymorph, (ii) the complementarity of 1H→13C cross-polarization NMR and direct-excitation 13C NMR techniques in probing the evolution of the solid and liquid phases in in-situ studies of crystallization processes, (iii) in-situ NMR studies of the process of guest exchange between a crystalline host-guest material in contact with the liquid phase of a more favourable guest molecule, and (iv) systematic studies of the influence of magic-angle sample spinning on the behaviour of a crystallization system.
NMR 结晶:监测结晶过程演变的原位 NMR 战略
我们讨论了用于结晶过程原位监测的各种核磁共振技术,强调现在有机会利用核磁共振技术的多功能性来揭示从溶液结晶过程中固相和液相随时间发生的变化。本文介绍了以下方面的新成果(i) 甘氨酸在低温下从水溶液中结晶,揭示了高度元稳定的 β 多晶体纯相的相对长期存在,(ii) 1H→13C 交叉极化 NMR 和直接激发 13C NMR 技术在结晶过程原位研究中探测固相和液相演变的互补性、(iii) 原位核磁共振研究结晶主-客体材料与更有利的客体分子液相接触时的客体交换过程,以及 (iv) 系统研究魔角样品旋转对结晶系统行为的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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