日本語
 
Help Privacy Policy ポリシー/免責事項
  詳細検索ブラウズ

アイテム詳細


公開

学術論文

Deuteron magnetic resonance studies of anhydrous caffeine

MPS-Authors
/persons/resource/persons128263

Zimmermann,  Herbert
Department of Biomolecular Mechanisms, Max Planck Institute for Medical Research, Max Planck Society;

External Resource

http://dx.doi.org/10.1524/zpch.2012.0333
(全文テキスト(全般))

Fulltext (restricted access)
There are currently no full texts shared for your IP range.
フルテキスト (公開)
公開されているフルテキストはありません
付随資料 (公開)
There is no public supplementary material available
引用

Nowaczyk, A., Nath, R. C., Zimmermann, H., & Böhmer, R. (2012). Deuteron magnetic resonance studies of anhydrous caffeine. Zeitschrift für physikalische Chemie, 226(11), 1115-1124. doi:10.1524/zpch.2012.0333.


引用: https://hdl.handle.net/11858/00-001M-0000-0024-1EA7-8
要旨
Methyl deuterated caffeine powder was studied using 2H−NMR relaxometry and line shape analysis. In caffeine's low−temperature phase the spin−lattice relaxation times indicate a thermally activated CD3 reorientation (activation energy ≈4 kJ/mol). Below the T1 minimum near 35 K the quadrupolar echo spectra develop features indicative for quantum mechanical tunneling. Dielectric measurements indicate the presence of dipole moment fluctuations with times scales that follow an Arrhenius law (energy barrier ≈107 kJ/mol). It is argued that the underlying motion involves small−angle molecular excursions and therefore remains undetected via stimulated−echo spectroscopy. The hysteresis accompanying the order/disorder transition taking place above 400 K was monitored using solid−echo line shapes as well as via spin relaxation times. In the high−temperature phase indications for the onset of anisotropic large−angle motions were obtained