Ghosh Abhik, Conradie Jeanet
Department of Chemistry, UiT - The Arctic University of Norway, Tromsø N-9037, Norway.
Department of Chemistry, University of the Free State, P.O. Box 339, Bloemfontein 9300, South Africa.
ACS Omega. 2023 Jan 25;8(5):4972-4975. doi: 10.1021/acsomega.2c07374. eCollection 2023 Feb 7.
Quantum chemical calculations have for some time predicted that perfluorinated polyhedral organic molecules should exhibit a low-energy LUMO consisting of the overlapping inward-pointing lobes of the C-F σ* orbitals. Accordingly, these molecules should be able to encapsulate an electron within the interior of their cavities. Inspired by the recent confirmation of this prediction for perfluorocubane, we have sought to identify additional perfluorinated cage molecules capable of this remarkable behavior, which we refer to as the perfluoro cage effect (PCE). Using DFT calculations with multiple well-tested exchange-correlation functionals and large STO-QZ4P basis sets, we have identified several systems including [n]prismanes ( = 3-6), [n]asteranes ( = 3-5), twistane, and two norbornadiene dimer cages that clearly exhibit the PCE. In other words, they exhibit a low-energy LUMO belonging to the total symmetric irreducible representation of the point group in question and adiabatic electron affinities ranging from somewhat under 1 eV to over 2 eV. A pronounced size effect appears to hold, with larger cages exhibiting higher electron affinities (EAs). The largest adiabatic EAs, well over 3 eV, are predicted for perfluorinated dodecahedrane and C. In contrast, the PCE is barely discernible for perfluorinated tetrahedrane and bicyclo[1.1.1]pentane.
一段时间以来,量子化学计算预测,全氟多面体有机分子应具有低能量的最低未占分子轨道(LUMO),该轨道由碳氟σ*轨道向内指向的重叠瓣组成。因此,这些分子应该能够在其空穴内部封装一个电子。受最近对全氟立方烷这一预测得到证实的启发,我们试图找出能够表现出这种显著行为的其他全氟笼状分子,我们将这种行为称为全氟笼效应(PCE)。使用具有多种经过充分测试的交换相关泛函和大的STO-QZ4P基组的密度泛函理论(DFT)计算,我们已经确定了几个体系,包括[n]棱柱烷(n = 3 - 6)、[n]星烷(n = 3 - 5)、扭曲烷以及两个降冰片二烯二聚体笼,它们都清楚地表现出了全氟笼效应。换句话说,它们表现出属于相关点群的全对称不可约表示的低能量最低未占分子轨道,并且绝热电子亲和能范围从略低于1电子伏特到超过2电子伏特。似乎存在明显的尺寸效应,较大的笼状分子表现出更高的电子亲和能(EA)。预测全氟十二面体烷和C的最大绝热电子亲和能远超过3电子伏特。相比之下,全氟四面体烷和双环[1.1.1]戊烷的全氟笼效应几乎难以察觉。