首页> 外文期刊>The Journal of Chemical Physics >Assignment of near-edge x-ray absorption fine structure spectra of metalloporphyrins by means of time-dependent density-functional calculations
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Assignment of near-edge x-ray absorption fine structure spectra of metalloporphyrins by means of time-dependent density-functional calculations

机译:依赖于时间的密度泛函计算的金属卟啉近边缘x射线吸收精细结构光谱的分配

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摘要

The C 1s and N 1s near-edge x-ray absorption fine structure (NEXAFS) spectra of three prototype tetraphenyl porphyrin (TPP) molecules are discussed in the framework of a combined experimental and theoretical study. We employ time-dependent density-functional theory (TDDFT) to compute the NEXAFS spectra of the open- and closed-shell metalloporphyrins CoTPP and ZnTPP as well as the free-base 2HTPP in realistic nonplanar conformations. Using Becke's well-known half-and-half hybrid functional, the computed core excitation spectra are mostly in good agreement with the experimental data in the low-energy region below the appropriate ionization threshold. To make these calculations feasible, we apply a new, simple scheme based on TDDFT using a modified single-particle input spectrum. This scheme is very easy to implement in standard codes and allows one to compute core excitation spectra at a similar cost as ordinary UV/vis spectra even for larger molecules. We employ these calculations for a detailed assignment of the NEXAFS spectra including subtle shifts in certain peaks of the N 1s spectra, which depend on the central coordination of the TPP ligand. We furthermore assign the observed NEXAFS resonances to the individual molecular subunits of the investigated TPP molecules.
机译:在结合实验和理论研究的框架下,讨论了三个原型四苯基卟啉(TPP)分子的C 1s和N 1s近边缘x射线吸收精细结构(NEXAFS)光谱。我们采用时间依赖的密度泛函理论(TDDFT)来计算开壳和闭壳金属卟啉CoTPP和ZnTPP以及游离碱2HTPP在现实的非平面构象中的NEXAFS光谱。使用Becke著名的半混半函数,计算出的核激发光谱与在适当电离阈值以下的低能区域的实验数据基本吻合。为了使这些计算可行,我们使用修改后的单粒子输入频谱,基于TDDFT应用了一种新的简单方案。这种方案非常容易用标准代码实现,甚至对于较大的分子,也可以以与普通的UV / vis光谱相似的成本计算核激发光谱。我们将这些计算用于NEXAFS光谱的详细分配,包括N 1s光谱某些峰中的细微变化,这取决于TPP配体的中心配位。我们进一步将观察到的NEXAFS共振分配给所研究的TPP分子的各个分子亚基。

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