Department of Chemical Engineering, University of Bath, Bath, United Kingdom.
Phys Chem Chem Phys. 2012 May 21;14(19):6914-21. doi: 10.1039/c2cp40366h. Epub 2012 Apr 10.
We demonstrate the extent to which modern detector technology, coupled with a high flux constant wavelength neutron source, can be used to obtain high quality diffraction data from short data collections, allowing the refinement of the full structures (including hydrogen positions) of hydrous compounds from in situ neutron powder diffraction measurements. The in situ thermodiffractometry and controlled humidity studies reported here reveal that important information on the reorientations of structural water molecules with changing conditions can be easily extracted, providing insight into the effects of hydrogen bonding on bulk physical properties. Using crystalline BaCl2·2H2O as an example system, we analyse the structural changes in the compound and its dehydration intermediates with changing temperature and humidity levels to demonstrate the quality of the dynamic structural information on the hydrogen atoms and associated hydrogen bonding that can be obtained without resorting to sample deuteration.
我们展示了现代探测器技术与高通量恒波长短中子源相结合,能够在短时间内获得高质量衍射数据的程度,这使得可以从原位中子粉末衍射测量中精修含水化合物的完整结构(包括氢原子位置)。本文报道的原位热衍射和控湿研究表明,可以轻松提取有关结构水分子在变化条件下重新取向的重要信息,从而深入了解氢键对整体物理性质的影响。我们以结晶 BaCl2·2H2O 作为示例系统,分析了化合物及其脱水中间产物在温度和湿度变化时的结构变化,以证明可以在不进行样品氘化的情况下获得有关氢原子和相关氢键的动态结构信息的质量。