Department of Organic Chemistry, Faculty of Chemistry, University of Murcia, Campus de Espinardo, 30100 Murcia, Spain.
Institut of Inorganic Chemistry, Rheinischen Friedrich-Wilhelms-Universiy of Bonn, Gerhard-Domagk-Str. 1, 53121 Bonn, Germany.
Molecules. 2018 Dec 17;23(12):3341. doi: 10.3390/molecules23123341.
After many decades of intense research in low-coordinate phosphorus chemistry, the advent of Na[OCP] brought new stimuli to the field of CHOP isomers and derivatives thereof. The present theoretical study at the CCSD(T)/def2-TZVPP level describes the chemical space of CHOP isomers in terms of structures and potential energy surfaces, using oxaphosphirene as the starting point, but also covering substituted derivatives and COP isomers. Bonding properties of the P⁻C, P⁻O, and C⁻O bonds in all neutral and anionic isomeric species are discussed on the basis of theoretical calculations using various bond strengths descriptors such as WBI and MBO, but also the Lagrangian kinetic energy density per electron as well as relaxed force constants. Ring strain energies of the superstrained 1-oxaphosphirene and its barely strained oxaphosphirane-3-ylidene isomer were comparatively evaluated with homodesmotic and hyperhomodesmotic reactions. Furthermore, first time calculation of the ring strain energy of an anionic ring is described for the case of oxaphosphirenide.
经过几十年对低配位磷化学的深入研究,Na[OCP]的出现为 CHOP 异构体及其衍生物领域带来了新的刺激。本研究采用 CCSD(T)/def2-TZVPP 理论水平,以氧化磷烯为起点,描述了 CHOP 异构体的化学空间,包括取代衍生物和 COP 异构体。基于各种键强度描述符(如 WBI 和 MBO)以及电子的拉格朗日动能密度和松弛力常数,对所有中性和阴离子异构体中 P⁻C、P⁻O 和 C⁻O 键的键合性质进行了理论计算讨论。采用同系物和超同系物反应比较评估了超张力 1-氧化磷烯及其几乎无张力氧化磷烯-3-亚基异构体的环应变能。此外,还首次针对氧化磷烯化物的阴离子环的环应变能进行了计算。