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In search of definitive signatures of the elusive NCCO radical

机译:寻找难以捉摸的NCCO部首的确定性标志

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Previous experimental assignments of the fundamental vibrational frequencies of NCCO have been brought into question by subsequent unsuccessful attempts to observe IR signatures of this radical at these frequencies. Here we compute the fundamental vibrational frequencies by applying second-order vibrational perturbation theory to the complete quartic force field computed at the all-electron (AE) coupled cluster singles, doubles, and perturbative triples level [CCSD(T)] with the correlation-consistent, polarized core-valence quadruple-zeta (cc-pCVQZ) basis set, which has tight functions to correctly describe core correlation. The AE-CCSD(T)/cc-pCVQZ geometric parameters are r(e)(N-C)=1.1623 A, r(e)(C-C)=1.4370 A, r(e)(C-O)=1.1758 A, theta(e)(N-C-C)=168.55 degrees, and theta(e)(C-C-O)=132.22 degrees. Our CCSD(T)/cc-pCVQZ values of the characteristic stretching frequencies nu(1) and nu(2) are 2171 and 1898 cm(-1), respectively, in stark contrast to the experimentally derived values of 2093 and 1774 cm(-1). Finally, focal-point extrapolations using correlation-consistent basis sets cc-pVXZ (X=D,T,Q,5,6) and electron correlation treatments as extensive as full coupled cluster singles, doubles, and triples (CCSDT) with perturbative accounting of quadruple excitations [CCSDT(Q)] determine the vibrationless barrier to linearity of NCCO and the dissociation energy (D-0) of NCCO -> NC+CO to be 8.4 and 26.5 kcal mol(-1), respectively. Using our precisely determined dissociation energy, we recommend a new 0 K enthalpy of formation for NCCO of 50.9 +/- 0.3 kcal mol(-1).
机译:由于后来未能成功地观察到这些自由基在这些频率上的IR标记,因此对NCCO基本振动频率的先前实验分配提出了质疑。在这里,我们通过将二阶振动摄动理论应用于在全电子(AE)耦合簇单,双和摄动三重能级[CCSD(T)]上计算的完整四次力场来计算基本振动频率,其相关性为-一致的极化核心价四元组(cc-pCVQZ)基集,具有严格的功能以正确描述核心相关性。 AE-CCSD(T)/ cc-pCVQZ几何参数为r(e)(NC)= 1.1623 A,r(e)(CC)= 1.4370 A,r(e)(CO)= 1.1758 A,theta(e )(NCC)= 168.55度,θ(e)(CCO)= 132.22度。特征拉伸频率nu(1)和nu(2)的CCSD(T)/ cc-pCVQZ值分别为2171和1898 cm(-1),与实验得出的2093和1774 cm( -1)。最后,使用相关一致基集cc-pVXZ(X = D,T,Q,5,6)和电子相关性处理进行焦点外推,其范围广泛,包括具有扰动核算的完全耦合簇单,双和三重(CCSDT)四重激发[CCSDT(Q)]确定了NCCO线性的无振动壁垒和NCCO-> NC + CO的解离能(D-0)分别为8.4和26.5 kcal mol(-1)。使用我们精确确定的解离能,我们建议NCCO的新的0 K生成焓为50.9 +/- 0.3 kcal mol(-1)。

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