Herold Dominik, Brauser Matthias, Kind Jonas, Thiele Christina M
Technische Universität Darmstadt/Technical University of Darmstadt, Clemens-Schöpf-Institut für Organische Chemie und Biochemie/Clemens Schöpf Institute of Organic Chemistry and Biochemistry, Darmstadt, D-64289, Germany.
Chemistry. 2024 Apr 22;30(23):e202304016. doi: 10.1002/chem.202304016. Epub 2024 Mar 13.
The investigation of reaction mechanisms is a complex task that usually requires the use of several techniques. To obtain as much information as possible on the reaction and any intermediates - possibly invisible to one technique - the combination of techniques is a solution. In this work we present a new setup for combined UV/Vis and NMR spectroscopy and compare it to an established alternative. The presented approach allows a versatile usage of different commercially-available components like mirrors and fiber bundles as well as different fixed pathlengths according to double transmission or single transmission measurements. While a previous approach is based on a dip-probe setup for conventional NMR probes, the new one is based on a micro-Helmholtz coil array (LiquidVoxel™). This makes the use of rectangular cuvettes possible, which ensure well-defined pathlengths allowing for quantification of species. Additionally, very low quantities of compound can be analyzed due to the microfabrication and small cuvette size used. As proof-of-principle this new setup for combined UV/Vis and NMR spectroscopy is used to examine a well-studied photochromic system of the dithienylethene compound class. A thorough comparison of the pros and cons of the two setups for combined UV/Vis and NMR measurements is performed.
反应机理的研究是一项复杂的任务,通常需要使用多种技术。为了尽可能多地获取有关反应和任何中间体的信息(可能有一种技术无法检测到这些中间体),技术的组合是一种解决方案。在这项工作中,我们展示了一种用于紫外/可见光谱和核磁共振光谱联用的新装置,并将其与一种已有的替代装置进行比较。所提出的方法允许灵活使用不同的商用组件,如镜子和光纤束,以及根据双透射或单透射测量使用不同的固定光程。虽然之前的方法基于传统核磁共振探头的浸入式探头设置,但新方法基于微亥姆霍兹线圈阵列(LiquidVoxel™)。这使得使用矩形比色皿成为可能,矩形比色皿可确保光程明确,从而实现物质的定量分析。此外,由于采用了微加工技术和小尺寸比色皿,因此可以分析极少量的化合物。作为原理验证,这种用于紫外/可见光谱和核磁共振光谱联用的新装置被用于研究二噻吩乙烯化合物类中一个经过充分研究的光致变色体系。我们对两种用于紫外/可见光谱和核磁共振联用测量的装置的优缺点进行了全面比较。