Hanson Graeme R., Sun Yan, Orvig Chris
Medicinal Inorganic Chemistry Group, Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, BC, V6T 1Z1 Canada, and Centre for Magnetic Resonance, University of Queensland, Brisbane, Queensland 4072, Australia.
Inorg Chem. 1996 Oct 23;35(22):6507-6512. doi: 10.1021/ic960490p.
Bis(maltolato)oxovanadium(IV) (abbreviated BMOV or VO(ma)(2)) has been characterized by electron paramagnetic resonance (EPR) spectroscopy in CH(2)Cl(2), H(2)O, MeOH, and pyridine at both room and low temperatures. Spin Hamiltonian parameters for mono- and bis(maltolato)oxovanadium(IV) complexes VO(ma) (=VO(ma)(H(2)O)(n)(), n = 2 or 3) and VO(ma)(2) (Hma = 3-hydroxy-2-methyl-4-pyrone, maltol) have been obtained by computer simulation (SOPHE). Configurations of solvated vanadyl/maltol complexes, VO(ma)(2)S, in solution (S = solvent) are proposed on the basis of a comparison of their hyperfine coupling constants with those obtained for related vanadium(IV) compounds in the literature. Whereas at room temperature pyridine coordinates to VO(ma)(2) in a position cis to the oxo ligand (cis isomer), in H(2)O or in MeOH solvated and unsolvated cis and trans adducts of VO(ma)(2) are all formed, with the cis isomer dominant. As expected, the coordinating ability was found to be in the order py > H(2)O approximately MeOH > CH(2)Cl(2). In aqueous solutions at room temperature and neutral pH, cis- and trans-VO(ma)(2)(H(2)O) complexes are present as major and minor components, respectively.
双(麦芽醇)氧钒(IV)(缩写为BMOV或VO(ma)(2))已通过电子顺磁共振(EPR)光谱在室温及低温下于二氯甲烷、水、甲醇和吡啶中进行了表征。通过计算机模拟(SOPHE)获得了单(麦芽醇)氧钒(IV)和双(麦芽醇)氧钒(IV)配合物VO(ma)(=VO(ma)(H(2)O)(n)(),n = 2或3)及VO(ma)(2)(Hma = 3-羟基-2-甲基-4-吡喃酮,麦芽醇)的自旋哈密顿参数。基于溶剂化氧钒/麦芽醇配合物VO(ma)(2)S(S = 溶剂)在溶液中的超精细偶合常数与文献中相关钒(IV)化合物的超精细偶合常数的比较,提出了其构型。在室温下,吡啶在与氧配体顺式的位置与VO(ma)(2)配位(顺式异构体),而在水中或甲醇中,VO(ma)(2)的溶剂化和未溶剂化的顺式和反式加合物均会形成,且顺式异构体占主导。正如预期的那样,发现配位能力的顺序为py > H(2)O ≈ MeOH > CH(2)Cl(2)。在室温及中性pH的水溶液中,顺式和反式VO(ma)(2)(H(2)O)配合物分别作为主要和次要成分存在。