Vosegaard T, Hald E, Langer V, Skov H J, Daugaard P, Bildsoe H, Jakobsen H J
Department of Chemistry, University of Aarhus, Aarhus C, DK-8000, Denmark.
J Magn Reson. 1998 Nov;135(1):126-32. doi: 10.1006/jmre.1998.1551.
Design of state-of-the-art instrumentation and software for acquisition and analysis of single-crystal NMR spectra is presented. The design involves highly accurate rotation of a goniometer, and the acquisition of all the spectra for each rotation axis is automatically controlled by the host computer of the spectrometer using a homebuilt interface between the computer and the single-crystal probe. Moreover, a software package (ASICS) for fast and routine assignment/analysis of complex single-crystal spectra has been developed. Employing this equipment, the acquisition and complete analysis of single-crystal NMR spectra may be performed in about the same time as required for powder methods (spinning or static). The hardware and software are compared to recent alternative approaches within single-crystal NMR. Finally, it has been observed that single-crystal NMR techniques may provide the desired data for samples where powder methods fail.
介绍了用于采集和分析单晶核磁共振谱的先进仪器和软件的设计。该设计涉及测角仪的高精度旋转,并且使用计算机与单晶探头之间的自制接口,由光谱仪的主机自动控制每个旋转轴的所有光谱采集。此外,还开发了一个用于快速和常规分析复杂单晶谱的软件包(ASICS)。使用该设备,单晶核磁共振谱的采集和完整分析所需的时间大约与粉末法(旋转或静态)所需时间相同。将硬件和软件与单晶核磁共振领域最近的替代方法进行了比较。最后,已经观察到,对于粉末法失败的样品,单晶核磁共振技术可以提供所需的数据。