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DFT prediction of multitopic N-heterocyclic carbenes using Clar's aromatic sextet theory

机译:使用克拉尔的芳香六重理论对多主题N-杂环卡宾进行DFT预测

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Existence of several multitopic N-heterocyclic carbene (NHC) ligands with up to four carbene centers have been predicted on the basis of Clar's aromatic sextet theory. Assessment on stability and reactivity of NHCs was made by quantifying aromaticity, aromatic stabilization energy (E_(aroma)), strength of carbene lone pair, proton affinity, and CuCl binding energy. On NICS(0) and HOMA scales of aromaticity, several NHCs showed high aromaticity, while E_(aroma) (17.2-19.4 kcal/mol) indicated substantial stability for the N-heterocycle. Homodesmotic reactions suggested that heat of formation of most of the newly designed carbenes is very close to that of the existing bis-NHCs. Designing a multitopic ligand through branching via C_(sp3) linkage was very effective as it improved the stability of the carbene. Electrostatic potential minimum (V_(min)) at the carbene lone pair suggested that annelation of heterocycle to a benzenoid ring or branching through C_(sp3) linkage can only marginally influence the electron donating power of the ligand. Hence, all multitopic NHCs showed proton affinity (252.3-267.4 kcal/mol) and CuCl binding energy (62.9-66.6 kcal/mol) very close to those of 1,3-dimethylimidazolidine-2-ylidene (1). It has also been demonstrated that branched multitopic 3-dimensional NHCs are attractive for designing metal-organic framework with narrow (1-1.5 nm) cage/pore size.
机译:根据克拉尔的芳香六分体理论,已经预测了具有多达四个卡宾中心的几种多主题N-杂环卡宾(NHC)配体的存在。通过定量芳香性,芳香稳定能(E_(aroma)),卡宾孤对的强度,质子亲和力和CuCl结合能来评估NHC的稳定性和反应性。在NICS(0)和HOMA标度的芳香性上,一些NHC显示出较高的芳香性,而E_(芳香度)(17.2-19.4 kcal / mol)表明对N-杂环具有实质性的稳定性。同态反应表明,大多数新设计的羧甲基苯甲醚的形成热非常接近现有的双-NHC。通过经由C_(sp3)链接分支设计多主题配体非常有效,因为它提高了卡宾的稳定性。卡宾孤对上的静电势最小值(V_(min))表明,杂环与苯环的成环作用或通过C_(sp3)支链的分支只能微弱地影响配体的给电子能力。因此,所有多主题NHC的质子亲和力(252.3-267.4 kcal / mol)和CuCl结合能(62.9-66.6 kcal / mol)非常接近1,3-二甲基咪唑烷-2-亚基(1)。还已经证明,支化的多维3维NHC对于设计具有窄的(1-1.5nm)笼/孔尺寸的金属-有机骨架是有吸引力的。

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