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Assignment of photoelectron spectra of silatranes: first ionization energies and the nature of the dative Si - N contact

机译:Silatranes的光电子能谱分配:第一电离能和Si <-N接触的性质

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The problematic experimental photoelectron spectra of fluoro- and ethoxy-silatranes, XSi[OCH2CH2](3)N (X = F and OEt), were assigned using theoretical spectra obtained by combining the OVGF//CCSD vertical ionization energies with the vibrational widths of the electronic transitions (linear vibronic coupling formalism, LVC). Taking into account the overlapping of the silatrane bands with the bands of probable impurities, bicyclic amines, (OH)XSi(OCH2CH2)(2)NCH2CH2OH, allowed us to reliably determine the position of the low-energy bands (at similar to 9.7 eV for F- and at similar to 9.2 eV for EtO-silatrane) associated with the ionization from a nitrogen lone pair level. For XSi[OCH2CH2](3)N (X = F, H, OEt, Me), the correlation between the first vertical ionization energies, VIEs1, and the geometrical, electronic and orbital characteristics of the Si <- N bonding was found. Its analysis suggests that the Si <- N coordination in silatranes is orbital-controlled rather than charge-controlled.
机译:使用将OVGF // CCSD垂直电离能与振动宽度相结合得到的理论光谱,分配了氟-和乙氧基-硅氧杂环丁烷XSi [OCH2CH2](3)N(X = F和OEt)的有问题的实验光电子光谱。电子跃迁(线性振动耦合形式,LVC)。考虑到硅氮烷谱带与可能的杂质谱带重叠,双环胺(OH)XSi(OCH2CH2)(2)NCH2CH2OH使我们能够可靠地确定低能谱带的位置(近似9.7 eV对于F-而言,与EtO-硅氮烷的9.2 eV相似)与氮孤对水平的电离有关。对于XSi [OCH2CH2](3)N(X = F,H,OEt,Me),发现第一垂直电离能VIEs1与Si <-N键的几何,电子和轨道特性之间的相关性。它的分析表明,硅原子中的Si <-N配位是受轨道控制的,而不是受电荷控制的。

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