Department of Solid State Electronics, V.A. Fock Institute of Physics, St. Petersburg State University, 7/9 Universitetskaya nab., 199034 Saint Petersburg, Russia.
Institute of Physics and Mathematics, Komi Science Centre, Ural Branch of the Russian Academy of Sciences, 167982 Syktyvkar, Russia.
Int J Mol Sci. 2023 Jun 7;24(12):9868. doi: 10.3390/ijms24129868.
A comparative study of the electronic structure of the salen ligand in the H(Salen) molecule and the [Ni(Salen)] complex was performed using the experimental methods of XPS, UV PES, and NEXAFS spectroscopy along with DFT calculations. Significant chemical shifts of +1.0 eV (carbon), +1.9 eV (nitrogen), and -0.4 eV (oxygen) were observed in the 1s PE spectra of the salen ligand atoms when passing from a molecule to a complex, unambiguously indicating a substantial redistribution of the valence electron density between these atoms. It is proposed that the electron density transfer to the O atoms in [Ni(Salen)] occurred not only from the Ni atom, but also from the N and C atoms. This process seemed to be realized through the delocalized conjugated π-system of the phenol C 2p electronic states of the ligand molecule. The DFT calculations (total and partial DOS) for the valence band H(Salen) and [Ni(Salen)] described well the spectral shape of the UV PE spectra of both compounds and confirmed their experimental identification. An analysis of the N and O 1s NEXAFS spectra clearly indicated that the atomic structure of the ethylenediamine and phenol fragments was retained upon passing from the free salen ligand to the nickel complex.
采用 XPS、UV PES 和 NEXAFS 光谱实验方法以及 DFT 计算,对 H(Salen) 分子和 [Ni(Salen)] 配合物中 salen 配体的电子结构进行了比较研究。当从分子过渡到配合物时,salen 配体原子的 1s PE 光谱中观察到碳原子的 +1.0 eV、氮原子的 +1.9 eV 和氧原子的 -0.4 eV 的显著化学位移,这明确表明这些原子之间的价电子密度发生了实质性的重新分布。有人提出,电子密度向 [Ni(Salen)] 中的 O 原子转移不仅来自 Ni 原子,而且来自 N 和 C 原子。这个过程似乎是通过配体分子的酚 C 2p 电子态的离域共轭π 体系来实现的。对于价带 H(Salen) 和 [Ni(Salen)] 的 DFT 计算(总和部分 DOS)很好地描述了这两种化合物的 UV PE 光谱的谱形,并证实了它们的实验鉴定。对 N 和 O 1s NEXAFS 光谱的分析清楚地表明,在从游离的 salen 配体过渡到镍配合物时,乙二胺和苯酚片段的原子结构得以保留。