首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Copper beta-Octakis(trifluoromethyl)corroles: New Paradigms for Ligand Substituent Effects in Transition Metal Complexes
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Copper beta-Octakis(trifluoromethyl)corroles: New Paradigms for Ligand Substituent Effects in Transition Metal Complexes

机译:β-Octakis(三氟甲基)铜铜:过渡金属配合物中配体取代基作用的新范式

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摘要

The reaction of copper beta-octabromo-meso-triarylcorrole derivatives with methyl 2,2-difluoro-2-(fluorosulfonyl)acetate has provided four beta-octakis(trifluoromethyl)corrole complexes, Cu[(CF3)(8)T(p-XP)C] (X = F, H, Me, OMe), in moderate yields. The new complexes present a conglomeration of remarkable substituent effects, both steric and electronic. DFT (OLYP/TZP) geometry optimization of Cu[(CF3)(8)TPC] (i.e., X = H) indicates a sterically hindered, strongly saddled geometry, with numerous short F center dot center dot center dot F nonbonded contacts of 2.5-2.9 angstrom and certain beta carbons displaced by over 1.5 angstrom relative to the mean corrole plane. The CF3 groups generally appear as quartets in the F-19 NMR spectra, with unexpectedly large (5)J(FF) coupling constants of about 14 Hz, apparently a manifestation of the highly crowded structure. The eight CF3 groups together exert a powerful influence on the redox potentials of the copper corrole core. Thus, the E-1/2ox of Cu[(CF3)(8)TPC](1.4 V vs saturated calomel electrode) is a full half of a volt above that of Cu(TPC) (0.9 V) and a quarter of a volt above that of Cu(Br8TPC) (1.14 V). Intriguingly, the beta CF3 groups also greatly intensify the influence of the meso aryl substituents on the redox potentials, relative to the other Cu[Y8T(p-XP)C] series, where Y = H, F, and Br. The Cu[(CF3)(8)T(p-XP)C] complexes also exhibit the most red-shifted optical spectra of any series of metallocorroles synthesized to date. Thus, between Cu(TPC) and Cu[(CF3)(8)T(p-MeO-P)C], the Soret maximum shifts by nearly 100 nm. The observed red-shifts are attributed in part to charge-transfer transitions of the Soret region and in part to the extreme nonplanar distortions.
机译:β-八溴-间位-三芳基铜的铜衍生物与2,2-二氟-2-(氟磺酰基)乙酸甲酯的反应提供了四种β-八烷基(三氟甲基)Corrole配合物Cu [(CF3)(8)T(p- XP)C](X = F,H,Me,OMe),产量中等。新的配合物在空间和电子方面都表现出显着的取代作用。 Cu [(CF3)(8)TPC](即X = H)的DFT(OLYP / TZP)几何优化表示空间受阻的,严重受压的几何,其中许多短F中心点中心点中心点F的非粘结触点数为2.5 -2.9埃和某些β碳相对于平均腐蚀平面位移超过1.5埃。 CF3基团通常在F-19 NMR光谱中显示为四重态,具有出乎意料的大(5)J(FF)耦合常数,约为14 Hz,显然是高度拥挤的结构的表现。八个CF3基团共同对铜腐蚀芯的氧化还原电势产生强大影响。因此,Cu [(CF3)(8)TPC]的E-1 / 2ox(相对于饱和甘汞电极为1.4 V)比Cu(TPC)的E-1 / 2ox(0.9 V)高出四分之一。高于Cu(Br8TPC)的电压(1.14 V)。有趣的是,相对于其中Y = H,F和Br的其他Cu [Y8T(p-XP)C]系列,βCF3基团也极大地增强了内消旋芳基取代基对氧化还原电势的影响。 Cu [(CF3)(8)T(p-XP)C]络合物还显示出迄今为止合成的任何系列金属茂化合物中最红移的光谱。因此,在Cu(TPC)和Cu [(CF3)(8)T(p-MeO-P)C]之间,Soret最大移动了近100 nm。观察到的红移部分归因于Soret区域的电荷转移跃迁,部分归因于极端的非平面畸变。

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