Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, Krakow 30-387, Poland.
Jagiellonian Centre for Experimental Therapeutics (JCET), Jagiellonian University, Bobrzynskiego 14, Krakow 30-348, Poland.
Phys Chem Chem Phys. 2021 Oct 20;23(40):23336-23340. doi: 10.1039/d1cp03020e.
Intermolecular interactions sensitive to chirality occur in many biological events. We report a complex formation between a versatile vanadium-based probe and a chiral co-ligand monitored the combination of electronic circular dichroism (ECD) and Raman scattering. This "ECD-Raman" effect was discovered relatively recently and can be measured using a Raman optical activity (ROA) spectrometer. Simulated spectra based on experimental ECD and degree of circularity (DOC) values agree with the observed ones. Sensitive recognition of the chiral enantiopure co-ligand is thus enabled by a combination of resonance of the excitation light with the diastereoisomeric complex, co-ligand complexation, circular dichroism, and polarized Raman scattering from the achiral solvent. Relatively dilute solutions could be detected (10 mol dm), about 1000× less than is necessary for conventional ROA detection of the pure co-ligand and comparable to concentrations needed for conventional ECD spectroscopy. The results thus show that differential ECD-Raman measurements can be conveniently used to monitor molecular interactions and molecular spectroscopic properties.
许多生物事件中都存在对手性敏感的分子间相互作用。我们报告了一种多功能基于钒的探针与手性共配体之间的复合物形成,该复合物通过电子圆二色性(ECD)和拉曼散射进行监测。这种“ECD-Raman”效应是最近才发现的,可以使用拉曼光学活性(ROA)光谱仪进行测量。基于实验 ECD 和圆二色性(DOC)值的模拟光谱与观察到的光谱一致。因此,通过激发光与非对映异构体配合物的共振、共配体络合、圆二色性以及手性溶剂的偏振拉曼散射的组合,实现了对手性对映纯共配体的灵敏识别。可以检测到相对稀的溶液(10 mol dm),这大约比纯共配体的常规 ROA 检测所需的浓度低 1000 倍,与常规 ECD 光谱所需的浓度相当。因此,结果表明,差分 ECD-Raman 测量可方便地用于监测分子相互作用和分子光谱特性。