I-Ting Tsai, Montero-Campillo M Merced, Alkorta Ibon, Elguero José, Yáñez Manuel
Departamento de Química, Módulo 13, Facultad de Ciencias, and Institute of Advanced Chemical Sciences (IAdChem), Universidad Autónoma de Madrid, Campus de Excelencia UAM-CSIC, Cantoblanco, 28049 Madrid, Spain.
Instituto de Química Médica, IQM-CSIC, Juan de la Cierva, 3, 28006 Madrid, Spain.
Molecules. 2021 Jun 4;26(11):3401. doi: 10.3390/molecules26113401.
Intramolecular interactions are shown to be key for favoring a given structure in systems with a variety of conformers. In -substituted benzene derivatives including a beryllium moiety, beryllium bonds provide very large stabilizations with respect to non-bound conformers and enthalpy differences above one hundred kJ·mol are found in the most favorable cases, especially if the newly formed rings are five or six-membered heterocycles. These values are in general significantly larger than hydrogen bonds in 1,2-dihidroxybenzene. Conformers stabilized by a beryllium bond exhibit the typical features of this non-covalent interaction, such as the presence of a bond critical point according to the topology of the electron density, positive Laplacian values, significant geometrical distortions and strong interaction energies between the donor and acceptor quantified by using the Natural Bond Orbital approach. An isodesmic reaction scheme is used as a tool to measure the strength of the beryllium bond in these systems in terms of isodesmic energies (analogous to binding energies), interaction energies and deformation energies. This approach shows that a huge amount of energy is spent on deforming the donor-acceptor pairs to form the new rings.
分子内相互作用被证明是在具有多种构象的体系中有利于特定结构的关键因素。在包含铍部分的对位取代苯衍生物中,铍键相对于非键合构象提供了非常大的稳定性,在最有利的情况下发现焓差超过一百kJ·mol,特别是当新形成的环是五元或六元杂环时。这些值通常明显大于1,2 - 二羟基苯中的氢键。由铍键稳定的构象表现出这种非共价相互作用的典型特征,例如根据电子密度拓扑存在键临界点、正拉普拉斯值、显著的几何畸变以及通过自然键轨道方法量化的供体和受体之间的强相互作用能。等键反应方案被用作一种工具,根据等键能(类似于结合能)、相互作用能和变形能来测量这些体系中铍键的强度。这种方法表明,为了形成新环,在使供体 - 受体对变形上花费了大量能量。