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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Experimental and theoretical evaluation of the charge distribution over the ruthenium and dioxolene framework of [Ru(OAc)(dioxolene)(terpy)] (terpy) 2,2 ': 6 ', 2 ''-terpyridine) depending on the substituents
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Experimental and theoretical evaluation of the charge distribution over the ruthenium and dioxolene framework of [Ru(OAc)(dioxolene)(terpy)] (terpy) 2,2 ': 6 ', 2 ''-terpyridine) depending on the substituents

机译:[Ru(OAc)(dioxolene)(terpy)](terpy)2,2':6',2''-terpyridine)在钌和二氧戊烯骨架上电荷分布的实验和理论评估

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摘要

A series of ruthenium complexes [ Ru( OAc)( dioxolene)( terpy)] having various substituents on the dioxolene ligand ( dioxolene) 3,5-t-Bu2C6H2O2 ( 1), 4-t-BuC6H3O2 ( 2), 4-ClC6H3O2 ( 3), 3,5-Cl2C6H2O2 ( 4), Cl4C6O2 ( 5); terpy) 2,2': 6'2 ''-terpyridine) were prepared. EPR spectra of these complexes in glassy frozen solutions ( CH2Cl2: MeOH = 95: 5, v/v) at 20 K showed anisotropic signals with g tensor components 2.242 > g(1) > 2.104, 2.097 > g(2) > 2.042, and 1.951 > g(3) > 1.846. An anisotropic value, < g > = g(1) - g(3), and an isotropic g value, < g > [( g(1)(2) + g(2)(2) + g(3)(2))/3](1/2), increase in the order 1 < 2 < 3 < 4 < 5. The resonance between the Ru-II( sq) ( sq = semiquinone) and RuIII( cat) ( cat) catecholato) frameworks shifts to the latter with an increase of the number of electron-withdrawing substituents on the dioxolene ligand. DFT calculations of 1, 2, 3, and 5 also support the increase of the Ru spin density ( RuIII character) with an increase of the number of Cl atoms on the dioxolene ligand. The singly occupied molecular orbitals ( SOMOs) of 1 and 5 are very similar to each other and stretch out the Ru - dioxolene frameworks, whereas the lowest unoccupied molecular orbital ( LUMO) of 5 is localized on Ru and two oxygen atoms of dioxolene in comparison with that of 1. Electron-withdrawing groups decrease the energy levels of both the SOMO and LUMO. In other words, an increase in the number of Cl atoms in the dioxolene ligand results in an increase of the positive charge on Ru. Successive shifts in the electronic structure between the RuII( sq) and RuIII( cat) frameworks caused by the variation of the substituents are compatible with the experimental data.
机译:在二氧戊烯配体(二氧戊烯)3,5-t-Bu2C6H2O2(1),4-t-BuC6H3O2(2),4-ClC6H3O2上具有各种取代基的一系列钌配合物[Ru(OAc)(dioxolene)(terpy)] (3),3,5-Cl2C6H2O2(4),Cl4C6O2(5);制备2,2':6'2''-叔吡啶)。这些复合物在玻璃态冷冻溶液(CH2Cl2:MeOH = 95:5,v / v)中的EPR光谱在20 K下显示出各向异性信号,其中g张量分量为2.242> g(1)> 2.104,2.097> g(2)> 2.042,和1.951> g(3)> 1.846。各向异性值 = g(1)-g(3),各向同性g值 [(g(1)(2)+ g(2)(2)+ g(3)( 2))/ 3](1/2),以1 <2 <3 <4 <5的顺序增加。Ru-II(sq)(sq = semiquinone)和RuIII(cat)(cat)儿茶酚素之间的共振)随着二氧戊烯配体上吸电子取代基数量的增加,骨架向后者转移。 1、2、3和5的DFT计算还支持Ru自旋密度的增加(RuIII特性)以及二氧戊烯配体上Cl原子数的增加。 1和5的单占据分子轨道(SOMO)彼此非常相似,并且延伸了Ru-二恶戊烯骨架,而相比之下,5的最低未占据分子轨道(LUMO)则位于Ru和二氧戊烯的两个氧原子上吸电子基团降低了SOMO和LUMO的能级。换句话说,二氧戊烯配体中Cl原子数目的增加导致Ru上正电荷的增加。由取代基的变化引起的RuII(sq)和RuIII(cat)骨架之间的电子结构的连续变化与实验数据兼容。

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