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Investigation of metal complex coordination structure using collision-induced dissociation and ion-molecule reactions in a quadrupole ion trap mass spectrometer

机译:在四极杆离子阱质谱仪中利用碰撞诱导解离和离子分子反应研究金属络合物的配位结构

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A technique described previously using ion-molecule (I-M) reactions to determine metal complex coordination number has been combined with collision-induced dissociation (CID) in an quadrupole ion trap mass spectrometer. Nitrogen-containing tripodal ligands complexed with some first-row transition metals [i.e. Mn(II), Co(II), Fe(II), and Ni(II)] are generated by electrospray ionization, and the coordination number of these metal complex ions are determined in the gas phase using I-M reactions. Information about the coordination sphere structure (i.e. metal-ligand connectivity) is then gathered by dissociating the metal complexes, reacting their product ions, and comparing the coordination number of these product ions with their parent ions. Results suggest that a change in the coordination number upon dissociation allows identification of the functionality involved in coordination to the metal. Conversely, no change in the coordination number indicates either the lost functional group is not involved in the coordination or the ligand rearranges to fill a coordination site vacated by the dissociated group. Distinguishing between the two processes (i.e. when coordination number does not change) was very difficult in these studies, but results suggest that, in some cases, ligand rearrangement does no occur. Also, some product ions did not provide any useful coordination information upon reaction. In these cases the product ions either did not contain the metal or contained the metal in a reduced oxidation state. The preliminary results presented here are promising and suggest that with further investigation of the dynamics of metal complex I-M reactions, a combination of CID and I-M reaction may allow metal-complex coordination structure to be determined using mass spectrometry.
机译:先前描述的使用离子分子(I-M)反应确定金属络合物配位数的技术已在四极杆离子阱质谱仪中与碰撞诱导解离(CID)结合使用。含氮的三脚架配体与一些第一行过渡金属络合[即通过电喷雾电离产生Mn(II),Co(II),Fe(II)和Ni(II)],并使用I-M反应在气相中确定这些金属络合物离子的配位数。然后通过解离金属络合物,使它们的产物离子发生反应,并将这些产物离子与它们的母离子的配位数进行比较来收集有关配位球结构(即金属-配体连接性)的信息。结果表明,解离后配位数的变化可以识别与金属配位所涉及的功能。相反,配位数没有变化表明失去的官能团不参与配位,或者配体重新排列以填充被离解基团腾空的配位位点。在这些研究中,很难区分这两个过程(即,当配位数不变时),但结果表明,在某些情况下,配体不会发生重排。而且,某些产物离子在反应时没有提供任何有用的配位信息。在这些情况下,产物离子要么不包含金属,要么以还原的氧化态包含金属。此处给出的初步结果是有希望的,并表明随着对金属络合物I-M反应动力学的进一步研究,CID和I-M反应的结合可以使质谱测定金属络合物的配位结构。

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