Chen Xiuting, Li Qingnuan, Gong Yu
Department of Radiochemistry, Shanghai Institute of Applied Physics, Chinese Academy of Sciences , Shanghai 201800, China.
University of Chinese Academy of Sciences , Beijing 100049, China.
J Phys Chem A. 2017 Dec 14;121(49):9429-9434. doi: 10.1021/acs.jpca.7b08094. Epub 2017 Dec 5.
Tripositive Ln(TMTDA) complexes (Ln = La-Lu except Pm, TMTDA = tetramethyl 3-thio-diglycolamide) were observed in the gas phase by electrospray ionization of LnCl and TMTDA mixtures. Collision-induced dissociation (CID) was employed to investigate their fragmentation chemistry, which revealed the influence of metal center as well as ligand on the ligated complexes. Ln(TMTDA)(TMTDA-45) resulting from C-N bond cleavage of TMTDA and hydrogen transfer was the major CID product for all Ln(TMTDA) except Eu(TMTDA), which predominantly formed charge-reducing product Eu(TMTDA) via electron transfer from TMTDA to Eu. Density functional theory calculations on the structure of La(TMTDA) and Lu(TMTDA) revealed that Ln was coordinated by six O atoms from three neutral TMTDA ligands, and both complexes possessed C symmetry. The S atom deviating from the ligand plane was not coordinated to the metal center. On the basis of the CID results of Ln(TMTDA), Ln(TMGA), and Ln(TMOGA), the fragmentation chemistry associated with the ligand depends on the coordination mode, while the redox chemistry of these tripositive ions is related to the nature of both metal centers and diamide ligands.
通过对LnCl和TMTDA混合物进行电喷雾电离,在气相中观察到三正价的Ln(TMTDA)配合物(Ln = 除Pm外的La-Lu,TMTDA = 四甲基3-硫代二甘醇酰胺)。采用碰撞诱导解离(CID)来研究它们的碎片化化学,这揭示了金属中心以及配体对配位配合物的影响。除Eu(TMTDA)外,所有Ln(TMTDA)的主要CID产物是由TMTDA的C-N键断裂和氢转移产生的Ln(TMTDA)(TMTDA-45),而Eu(TMTDA)主要通过电子从TMTDA转移到Eu形成电荷减少产物Eu(TMTDA)。对La(TMTDA)和Lu(TMTDA)结构的密度泛函理论计算表明,Ln由来自三个中性TMTDA配体的六个O原子配位,并且两种配合物都具有C对称性。偏离配体平面的S原子未与金属中心配位。基于Ln(TMTDA)、Ln(TMGA)和Ln(TMOGA)的CID结果,与配体相关的碎片化化学取决于配位模式,而这些三正价离子的氧化还原化学与金属中心和二酰胺配体的性质都有关。