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作为Mo(2)(4+)单元之间桥梁的环状聚酰胺二酸根阴离子:合成、晶体结构、电化学、吸收光谱和电子结构

Cyclic polyamidato dianions as bridges between Mo(2)(4+) units: synthesis, crystal structures, electrochemistry, absorption spectra, and electronic structures.

作者信息

Cotton F A, Donahue James P, Murillo Carlos A, Pérez Lisa M, Yu Rongmin

机构信息

Department of Chemistry, Texas A&M University, College Station, Texas 77842-3012 , USA.

出版信息

J Am Chem Soc. 2003 Jul 23;125(29):8900-10. doi: 10.1021/ja0358044.

Abstract

Compounds in which quadruply bonded Mo(2)(4+) units, Mo(2)(DAniF)(3) (DAniF = N,N'-di-p-anisylformamidinate), are linked by cyclic diamidate anions have been synthesized and characterized by X-ray crystallography and spectroscopic methods. As identified by the diamidate linker, these compounds are 4,6-dioxypyrimidinate (2), 2,3-dioxypyrazinate (3), 2,3-dioxyquinoxalinate (4), 2,3-dioxy-5,6-dicyanopyrazinate (5), and cyanurate (6). With uracilate, a dinuclear unlinked 1:1 adduct is formed, Mo(2)(DAniF)(3)(uracilate) (1). The cyclic voltammograms of 3-5 reveal significantly larger DeltaE(1/2) values (258 mV-308 mV) than that of the oxalate linked analogue (212 mV), which is indicative of greater charge delocalization in the mixed valent Mo(2)(4+)/Mo(2)(5+) species and hence greater communication between the two Mo(2) units. DeltaE(1/2) for 2 is substantially lower than those for 3-5. This difference is attributed to the meta disposition of the two amidate groups in 4,6-dioxypyrimidinate as compared to their ortho arrangement in the pyrazinate-type linkers. The absorption spectra of the linked compounds 3-5 are more complex than those of the analogous polyunsaturated dicarboxylate linked compounds and reveal at least two significant absorption bands within the region 420-550 nm. Compound 2 also has two bands but with significantly lower intensity. Time dependent DFT calculations upon 2 and 3 indicate rather different electronic structures for these two structural isomers. The two bands for 3 have delta --> pi character, and the pi type orbitals have substantial contributions from the Mo(2) units as well as from the diamidate linker. The excitations observed in 2 are mainly metal based. The differences between the electronic spectra of 2 and 3 are consistent with the electrochemistry in underscoring the profound physical effect of changing the symmetry of the diamidate linker.

摘要

已合成出其中四重键合的Mo₂⁴⁺单元Mo₂(DAniF)₃(DAniF = N,N'-二对茴香基甲脒)通过环状二酰胺阴离子相连的化合物,并通过X射线晶体学和光谱方法对其进行了表征。经二酰胺连接基鉴定,这些化合物为4,6-二氧嘧啶酸酯(2)、2,3-二氧吡嗪酸酯(3)、2,3-二氧喹喔啉酸酯(4)、2,3-二氧-5,6-二氰基吡嗪酸酯(5)和三聚氰酸酯(6)。与尿嘧啶酸形成了一种双核未连接的1:1加合物Mo₂(DAniF)₃(尿嘧啶酸)(1)。3 - 5的循环伏安图显示,其ΔE₁/₂值(258 mV - 308 mV)明显大于草酸盐连接类似物的ΔE₁/₂值(212 mV),这表明在混合价态的Mo₂⁴⁺/Mo₂⁵⁺物种中电荷离域程度更高,因此两个Mo₂单元之间的通信更强。2的ΔE₁/₂明显低于3 - 5的ΔE₁/₂。这种差异归因于4,6-二氧嘧啶酸酯中两个酰胺基的间位排列,而在吡嗪酸酯型连接基中它们是邻位排列。连接化合物3 - 5的吸收光谱比类似的多不饱和二羧酸酯连接化合物的吸收光谱更复杂,并且在420 - 550 nm区域内显示至少两个明显的吸收带。化合物2也有两个吸收带,但强度明显较低。对2和3进行含时密度泛函理论计算表明,这两种结构异构体具有相当不同的电子结构。3的两个吸收带具有δ→π特征,并且π型轨道对Mo₂单元以及二酰胺连接基有很大贡献。在2中观察到的激发主要基于金属。2和3的电子光谱差异与电化学结果一致,突出了改变二酰胺连接基对称性的深远物理效应。

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