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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Guided Ion Beam and Theoretical Study of the Reactions of Ir~+ with H_2,D_2,and HD
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Guided Ion Beam and Theoretical Study of the Reactions of Ir~+ with H_2,D_2,and HD

机译:引导离子束及Ir〜+与H_2,D_2和HD反应的理论研究

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摘要

We present the kinetic energy dependence of reactions of the late third-row transition metal cation Ir~+ with H_2,D_2,and HD measured using a guided ion beam tandem mass spectrometer.A flow tube ion source produces Ir~+ ions in its electronic ground state term and primarily in the ground spin-orbit level.Corresponding state-specific reaction cross sections are obtained.The kinetic energy dependence of the cross sections for forming IrH~+ and IrD~+ are analyzed to give a 0 K bond dissociation energy of D_0(Ir~+-H)= 3.12(+-)0.06 eV.Ab initio calculations at the B3LYP/HW+/6-311+G(3p),BHLYP/HW+/6-311+G(3p),and QCISD(T)/HW+/ 6-311 +G(3p)levels performed here show reasonable agreement with the experimental bond energies and with the previous theoretical values available.Theory also provides the electronic structures of these species and the reactive potential energy surfaces.We also compare this third-row transition metal system with those of the first-row and second-row congeners Co~+ and Rh~+.We find that Ir~+ has a stronger M~+-H bond,which can be explained by the lanthanide contraction and relativistic effects that alter the relative size of the valence s and d orbitals.Results from reactions with HD provide insight into the reaction mechanisms and indicate that Ir~+ reacts largely via an insertion mechanism,in contrast with the lighter group 9 metal ions Co~+ and Rh~+ which react via direct mechanisms.
机译:我们介绍了第三行过渡金属阳离子Ir〜+与H_2,D_2和HD的反应的动能依赖性,该离子是通过导向离子束串联质谱仪测量的。流管离子源在其电子中产生Ir〜+离子基态项,主要是在地自旋轨道上,获得了相应的状态特异性反应截面,分析了形成IrH〜+和IrD〜+的截面的动能依赖性,得出了0 K键离解能D_0(Ir〜+ -H)= 3.12(+-)0.06 eV.B3LYP / HW + / 6-311 + G(3p),BHLYP / HW + / 6-311 + G(3p)的Ab初始计算此处执行的QCISD(T)/ HW + / 6-311 + G(3p)能级与实验键能和先前可用的理论值显示出合理的一致性。该理论还提供了这些物质的电子结构和反应势能面。我们还将第三行过渡金属系统与第一行和第二行同类金属Co〜+和R h〜+。我们发现Ir〜+具有更强的M〜+ -H键,这可以用镧系元素的收缩和相对论效应来解释,它们改变了价价s和d轨道的相对大小。对反应机理的深入了解表明,Ir〜+主要通过插入机理发生反应,而较轻的第9组金属离子Co〜+和Rh〜+通过直接机理发生反应。

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