Blackburn Octavia A, Routledge Jack D, Jennings Laura B, Rees Nicholas H, Kenwright Alan M, Beer Paul D, Faulkner Stephen
University of Oxford, Chemistry Research Laboratory, 12 Mansfield Road, Oxford OX1 3TA, UK.
Department of Chemistry, University of Durham, South Road, Durham DH1 3LE, UK.
Dalton Trans. 2016 Feb 21;45(7):3070-3077. doi: 10.1039/c5dt04349b. Epub 2016 Jan 14.
Fluoride binding by a series of europium and ytterbium complexes of DOTA-tetraamide ligands derived from primary, secondary and tertiary amides has been studied by NMR and luminescence spectroscopies. In all the systems studied, fluoride binding results in a change in the nature of the magnetic anisotropy at the metal centre from an easy axis, to an easy plane anisotropy. This results in reversal of the peaks in the NMR spectra, and in changes to the fine structure of the luminescence spectra. Furthermore, changes to the periphery of the binding cavity are implicated in determining the affinity constant for fluoride. There are clear differences in the entropic contribution to the free energy of activation between systems with benzylic amides and those with methylamides.
通过核磁共振(NMR)和发光光谱法研究了一系列由伯酰胺、仲酰胺和叔酰胺衍生的DOTA-四酰胺配体的铕和镱配合物与氟化物的结合情况。在所研究的所有体系中,氟化物结合导致金属中心的磁各向异性性质从易轴各向异性转变为易面各向异性。这导致NMR光谱中的峰发生反转,并使发光光谱的精细结构发生变化。此外,结合腔外围的变化与氟化物亲和常数的确定有关。含有苄基酰胺的体系和含有甲基酰胺的体系在活化自由能的熵贡献方面存在明显差异。