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双原子过渡金属氮化物的键离解能。

Bond dissociation energies of diatomic transition metal nitrides.

机构信息

Department of Chemistry, University of Utah, Salt Lake City, Utah 84112, USA.

出版信息

J Chem Phys. 2023 Feb 28;158(8):084308. doi: 10.1063/5.0141182.

Abstract

Resonant two-photon ionization (R2PI) spectroscopy has been used to measure the bond dissociation energies (BDEs) of the diatomic transition metal nitrides ScN, TiN, YN, MoN, RuN, RhN, HfN, OsN, and IrN. Of these, the BDEs of only TiN and HfN had been previously measured. Due to the many ways electrons can be distributed among the d orbitals, these molecules possess an extremely high density of electronic states near the ground separated atom limit. Spin-orbit and nonadiabatic interactions couple these states quite effectively, so that the molecules readily find a path to dissociation when excited above the ground separated atom limit. The result is a sharp drop in ion signal in the R2PI spectrum when the molecule is excited above this limit, allowing the BDE to be readily measured. Using this method, the values D(ScN) = 3.905(29) eV, D(TiN) = 5.000(19) eV, D(YN) = 4.125(24) eV, D(MoN) = 5.220(4) eV, D(RuN) = 4.905(3) eV, D(RhN) = 3.659(32) eV, D(HfN) = 5.374(4) eV, D(OsN) = 5.732(3) eV, and D(IrN) = 5.115(4) eV are obtained. To support the experimental findings, ab initio coupled-cluster calculations extrapolated to the complete basis set limit (CBS) were performed. With a semiempirical correction for spin-orbit effects, these coupled-cluster single double triple-CBS calculations give a mean absolute deviation from the experimental BDE values of 0.20 eV. A discussion of the periodic trends, summaries of previous work, and comparisons to isoelectronic species is also provided.

摘要

共振双光子电离(R2PI)光谱已被用于测量双原子过渡金属氮化物 ScN、TiN、YN、MoN、RuN、RhN、HfN、OsN 和 IrN 的键离解能(BDE)。其中,TiN 和 HfN 的 BDE 之前已经被测量过。由于电子在 d 轨道中可以有多种分布方式,这些分子在接近基态分离原子极限的位置具有极高的电子态密度。自旋轨道和非绝热相互作用非常有效地耦合这些态,因此当分子被激发到基态分离原子极限以上时,很容易找到离解的途径。结果是,当分子被激发到这个极限以上时,R2PI 光谱中的离子信号急剧下降,从而可以很容易地测量 BDE。使用这种方法,得到的 D(ScN) = 3.905(29) eV、D(TiN) = 5.000(19) eV、D(YN) = 4.125(24) eV、D(MoN) = 5.220(4) eV、D(RuN) = 4.905(3) eV、D(RhN) = 3.659(32) eV、D(HfN) = 5.374(4) eV、D(OsN) = 5.732(3) eV 和 D(IrN) = 5.115(4) eV。为了支持实验结果,还进行了从头算耦合簇计算,外推至完全基组极限(CBS)。通过对自旋轨道效应的半经验修正,这些耦合簇单双三重 CBS 计算得到的与实验 BDE 值的平均绝对偏差为 0.20 eV。还讨论了周期性趋势、以前工作的总结以及与等电子体的比较。

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