Literature DB >> 28257016

Solid-state NMR meets electron diffraction: determination of crystalline polymorphs of small organic microcrystalline samples.

Tetsuo Oikawa1, Manabu Okumura2, Tsunehisa Kimura2, Yusuke Nishiyama3.   

Abstract

A combination of solid-state NMR (ssNMR) and electron diffraction (ED) has been used to determine the crystalline polymorphs in small-organic microcrystalline molecules. Although 13C cross-polarization magic angle spinning (CPMAS) is a widely used method for determining crystalline polymorphs, even in a mixture, it sometimes fails if the molecular conformations are similar. On the other hand, ED can, in principle, differentiate crystalline forms with different lattice parameters, even when they have very similar molecular conformations. However, its application is usually limited to inorganic molecules only. This is because the ED measurements of organic molecules are very challenging due to degradation of the sample by electron irradiation. We overcame these difficulties by the use of 1H double-quantum/single-quantum correlation experiments at very fast magic angle spinning, together with ED observations under mild electron irradiation. The experiments were demonstrated on L-histidine samples in L-histidine·HCl·H2O, orthorhombic L-histidine and monoclinic L-histidine.

Entities:  

Keywords:  NMR crystallography; crystalline polymorphs; electron diffraction; solid-state NMR; transmission electron microscopy

Year:  2017        PMID: 28257016     DOI: 10.1107/S2053229617003084

Source DB:  PubMed          Journal:  Acta Crystallogr C Struct Chem        ISSN: 2053-2296            Impact factor:   1.172


  1 in total

1.  Understanding hydrogen-bonding structures of molecular crystals via electron and NMR nanocrystallography.

Authors:  Candelaria Guzmán-Afonso; You-Lee Hong; Henri Colaux; Hirofumi Iijima; Akihiro Saitow; Takuma Fukumura; Yoshitaka Aoyama; Souhei Motoki; Tetsuo Oikawa; Toshio Yamazaki; Koji Yonekura; Yusuke Nishiyama
Journal:  Nat Commun       Date:  2019-08-06       Impact factor: 14.919

  1 in total

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