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首页> 外文期刊>Inorganica Chimica Acta >Preparation and structure of bis(#mu#-acetato)dichlorodicarbonyldiiridium(II) complexes with Group 15 ligands and ESR and density functional theory studies of electronic structure of their cationic radicals
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Preparation and structure of bis(#mu#-acetato)dichlorodicarbonyldiiridium(II) complexes with Group 15 ligands and ESR and density functional theory studies of electronic structure of their cationic radicals

机译:具有15族配体和ESR的双(#mu#-乙酰基)二氯二羰基二铱(II)配合物的制备和结构以及阳离子自由基电子结构的密度泛函理论研究

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摘要

bis(#mu#-Acetato)dichlorodicabonyldiiridium(II) complexes with Group 15 compounds as axial ligands, [Ir_2(#mu#-O_2CMe)_2Cl_2(CO)_2L_2] (L=PPh_3; 1, PCy_3; 2, P(OPh)_3, AsPh_3; 4, SbPh_3; 5) were synthesized. the Ir-Ir distances of complexes 2-5 (2.6200(9)-2.6936(7)A) were longer than those of the complexes with MeCN, py or dmso ligands at the axial sites. Cyclic voltammograms of 1-5 show a chemically reversible one-electron oxidation wave of which E_(1/2)(vs. Fc~+-Fc) values were between 0.22 for 2 and 0.75 V for 3 depending on the axial ligands. Oxidation by electrolysis and/or radiolysis of 1, 2 and 4 gave their cationic radicals. The ESR spectra of 1~(+centre dot), 2~(+centre dot) and 4~(+centre dot) at 77K were pseudo-axially symmetric with g tensors of G_(perpendicular)=2.15 and g_(||)=1.96, 2.18 and 1.95, and 2.20 and 1.96, respectively. Their hyperfine coupling indicates that their odd electron is delocalized equivalently onto the two axial phosphorous or arsenic atoms. The odd electron densities were estimated from the hyperfine coupling tensors as #rho#approx=0.1 on the P atoms of 1~(+centre dot) and 2~(+centre dot) and #rho#approx=0.15 on the As atoms of 4~(+centre dot). These results indicate that their singly occupied molecular orbital 9SOMO) is the #sigma#_(IrP) or #sigma#_(IrP)~*or #sigma#_(IrAs)~* character. DFT calculations for model complexes, [Ir(#mu#-O_2CH)_2Cl_2(CO)_2(Ph_3)_2]~(+centre dot) (6~(+centre dot)) and [Ir_2(#mu#--O_2CH)_2]_2Cl_2(CO)_2(AsH_3)_12]~(+centre dot) (7~(+centre dot)), gave electronic structures consistent with the ESR results.
机译:双(#mu#-Acetato)二氯二癸基二铱(II)配合物与第15组化合物作为轴向配体[Ir_2(#mu#-O_2CMe)_2Cl_2(CO)_2L_2](L = PPh_3; 1,PCy_3; 2,P(OPh)合成)_3,AsPh_3; 4,SbPh_3; 5)。配合物2-5(2.6200(9)-2.6936(7)A)的Ir-Ir距离比在轴向位点处具有MeCN,py或dmso配体的配合物更长。 1-5的循环伏安图显示了化学可逆的单电子氧化波,取决于轴向配体,其E_(1/2)(vs。Fc〜+ -Fc)值对于2为介于0.22和对于3为0.75V之间。通过电解和/或辐射分解1、2和4进行氧化,得到它们的阳离子自由基。在77K时1〜(+中心点),2〜(+中心点)和4〜(+中心点)的ESR谱是伪轴向对称的,其g张量为G_(垂直)= 2.15和g_(||) = 1.96、2.18和1.95,以及2.20和1.96。它们的超精细耦合表明它们的奇数电子等效地离域到两个轴向磷或砷原子上。根据超精细耦合张量,奇数电子密度在1〜(+中心点)和2〜(+中心点)的P原子上为#rho#approx = 0.1,而在As原子上的#rho#approx = 0.15 4〜(+中心点)这些结果表明它们的单占据分子轨道9SOMO是#sigma #_(IrP)或#sigma #_(IrP)〜*或#sigma #_(IrAs)〜*字符。模型复合物[Ir(#mu#-O_2CH)_2Cl_2(CO)_2(Ph_3)_2]〜(+中心点)(6〜(+中心点))和[Ir_2(#mu#-O_2CH)的DFT计算)_2] _2Cl_2(CO)_2(AsH_3)_12]〜(+中心点)(7〜(+中心点)),给出的电子结构与ESR结果一致。

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