Synthesis of Unsupported d<sup>1</sup>–d<sup><i>x</i></sup> Oxido-Bridged Heterobimetallic Complexes Containing V<sup>IV</sup>: A New Direction for Metal-to-Metal Charge Transfer
作者:Xinyuan Wu、Tao Huang、Travis T. Lekich、Roger D. Sommer、Walter W. Weare
DOI:10.1021/acs.inorgchem.5b00370
日期:2015.6.1
Heterobimetallic complexes composed only of first-row transition metals [(TMTAA)VIV═O→MIIPy5Me2](OTf)2 (TMTAA = 7,16-dihydro-6,8,15,17-tetramethyldibenzo[b,i][1,4,8,11]tetraazacyclotetradecine; Py5Me2 = 2,6-bis(1,1-bis(2-pyridyl)ethyl)pyridine; M = MnII, FeII, CoII, NiII, CuII; OTf = trifluoromethanesulfonate) have been synthesized through a dative interaction between a terminal oxido and MII metal
仅由第一行过渡金属[(TMTAA)V IV = O→M II Py 5 Me 2 ](OTf)2组成的异双金属配合物(TMTAA = 7,16-dihydro-6,8,15,17-tetramethyldibenzo [ b,i ] [1,4,8,11]四氮杂十四烷; Py 5 Me 2 = 2,6-双(1,1-双(2-吡啶基)乙基)吡啶; M = Mn II,Fe II,Co II, Ni II,Cu II; OTf =三氟甲磺酸盐)是通过末端氧化物与M II金属中心之间的定性作用合成的。这是V IV的第一个系列→O→M II杂双金属配合物,含不支持的氧化桥。这五个复合物,仅存在V IV = O→铁II(图3b)具有在形成双核物种的清晰新吸收带(502纳米,ε= 1700米-1厘米-1)。此功能分配给从V IV到Fe II的金属间电荷转移(MMCT)过渡,形成V V -O-Fe I兴奋的