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Guided ion beam and theoretical study of the reactions of Hf~+ with H_2, D_2, and HD

机译:引导离子束和Hf〜+与H_2,D_2和HD反应的理论研究

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The kinetic energy dependences of reactions of the third-row transition metal cation Hf+ with H2, D2, and HD were determined using a guided ion beam tandem mass spectrometer. A flow tube ion source produces Hf+ in its D2 (6 s2 5 d1) electronic ground state level. Corresponding state-specific reaction cross sections are obtained. The kinetic energy dependences of the cross sections for the endothermic formation of HfH+ and HfD+ are analyzed to give a 0 K bond dissociation energy of D_0 (Hf+ -H) =2.11±0.08 eV. Quantum chemical calculations at several levels of theory performed here generally overestimate the experimental bond energy but results obtained using the Becke-half-and-half-LYP functional show good agreement. Theory also provides the electronic structures of these species and the reactive potential energy surfaces. Results from the reactions with HD provide insight into the reaction mechanisms and indicates that Hf+ reacts via a statistical mechanism. We also compare this third-row transition metal system with the first-row and second-row congeners, Ti+ and Zr+, and find that Hf+ has a weaker M+ -H bond. As most third-row transition metal hydride cation bonds exceed their lighter congeners, this trend is unusual but can be understood using promotion energy arguments.
机译:使用导向离子束串联质谱仪确定第三行过渡金属阳离子Hf +与H2,D2和HD的反应的动能依赖性。流量管离子源在其D2(6 s2 5 d1)电子基态水平下产生Hf +。获得了相应的状态特异性反应截面。分析了HfH +和HfD +的吸热形成的横截面的动能依赖性,从而得出D_0(Hf + -H)= 2.11±0.08 eV的0 K键解离能。在这里进行的几个理论水平的量子化学计算通常高估了实验的键能,但是使用Becke-half-half-LYP和LYP泛函获得的结果显示出良好的一致性。理论还提供了这些物质的电子结构和电抗势能表面。与HD反应的结果提供了对反应机理的深入了解,并表明Hf +通过统计机理进行反应。我们还将此第三行过渡金属系统与第一行和第二行同类物Ti +和Zr +进行了比较,发现Hf +具有较弱的M + -H键。由于大多数第三行过渡金属氢化物阳离子键均超过其较轻的同类物,因此这种趋势是不寻常的,但可以使用促进能的论点来理解。

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