Khatymov Rustem V, Muftakhov Mars V, Tuktarov Renat F, Shchukin Pavel V, Khatymova Lyaysan Z, Pancras Eugene, Terentyev Andrey G, Petrov Nikolay I
Mendeleev University of Chemical Technology of Russia, Miusskaya Square, 9, 125047 Moscow, Russia.
Institute of Molecule and Crystal Physics, Ufa Federal Research Center, Russian Academy of Sciences, Prospekt Oktyabrya, 151, 450075 Ufa, Russia.
J Chem Phys. 2024 Mar 28;160(12). doi: 10.1063/5.0195316.
Resonant electron capture by aza and diaza derivatives of phenanthrene (7,8-benzoquinoline and 1,10-phenanthroline) and anthracene (acridine and phenazine) at incident free electron energies (Ee) in the range of 0-15 eV was studied. All compounds except 7,8-benzoquinoline form long-lived molecular ions (M-) at thermal electron energies (Ee ∼ 0 eV). Acridine and phenazine also form such ions at epithermal electron energies up to Ee = 1.5-2.5 eV. The lifetimes (τa) of M- with respect to electron autodetachment are proportional to the extent of aza-substitution and increase on going from molecules with bent geometry of the fused rings (azaphenanthrenes) to linear isomers (azaanthracenes). These regularities are due to an increase in the adiabatic electron affinities (EAa) of the molecules. The EAa values of the molecules under study were comprehensively assessed based on a comparative analysis of the measured τa values using the Rice-Ramsperger-Kassel-Marcus theory, the electronic structure analysis using the molecular orbital approach, as well as the density functional calculations of the total energy differences between the molecules and anions. The only fragmentation channel of M- ions from the compounds studied is abstraction of hydrogen atoms. When studying [M-H]- ions, electron autodetachment processes were observed, the τa values were measured, and the appearance energies were determined. A comparative analysis of the gas-phase acidity of the molecules and the EAa values of the [M-H]· radicals revealed their proportionality to the EAa values of the parent molecules.
研究了菲(7,8 - 苯并喹啉)和蒽(吖啶和吩嗪)的氮杂和二氮杂衍生物在0 - 15 eV入射自由电子能量(Ee)下的共振电子俘获。除7,8 - 苯并喹啉外,所有化合物在热电子能量(Ee ∼ 0 eV)下都形成长寿命分子离子(M-)。吖啶和吩嗪在高达Ee = 1.5 - 2.5 eV的超热电子能量下也形成此类离子。M-相对于电子自脱附的寿命(τa)与氮杂取代程度成正比,并且从稠环具有弯曲几何形状的分子(氮杂菲)到线性异构体(氮杂蒽)时增加。这些规律是由于分子的绝热电子亲和能(EAa)增加所致。基于使用赖斯 - 拉姆施佩格 - 卡塞尔 - 马库斯理论对测量的τa值进行比较分析、使用分子轨道方法进行电子结构分析以及对分子和阴离子之间总能量差进行密度泛函计算,对所研究分子的EAa值进行了全面评估。所研究化合物的M-离子的唯一碎片化通道是氢原子的提取。在研究[M - H]-离子时,观察到了电子自脱附过程,测量了τa值,并确定了出现能。对分子的气相酸度和[M - H]·自由基的EAa值的比较分析表明它们与母体分子的EAa值成正比。