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Computational strategy for graphene: Insight from odd electrons correlation

机译:石墨烯的计算策略:奇电子相关性的洞察力

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The correlation of odd electrons in graphene turns out to be significant so that the species should be attributed to correlated ones. This finding profoundly influences the computational strategy addressing it to multireference computational schemes. Owing to serious problems related to the schemes realization, a compromise can be suggested using single-determinant approaches based on either Hartree-Fock or density-functional theory in the form of unrestricted open-shell presentation. Both computational schemes enable to fix the electron correlation, whereas only the Hartree-Fock theory suggests a set of quantities to be calculated that can quantitatively characterize the electron correlation and be used for a quantitative description of such graphene properties as magnetism, chemical reactivity, and mechanical response. The article presents concepts and algorithms of the unrestricted Hartree-Fock theory applied for the consideration of magnetic properties of nanographenes, their chemical modification by the example of stepwise hydrogenation, as well as a possible governing the electron correlation by the carbon skeleton deformation.
机译:石墨烯中奇数电子的相关性非常显着,因此该物种应归因于相关电子。这一发现深刻地影响了将其寻址到多参考计算方案的计算策略。由于与方案实现相关的严重问题,可以使用基于Hartree-Fock或密度泛函理论的单行列式方法以不受限制的开放外壳表示形式提出折衷方案。两种计算方案都可以固定电子相关性,但是只有Hartree-Fock理论提出了一组要计算的数量,这些数量可以定量地描述电子相关性,并可以用于定量描述石墨烯的性质,例如磁性,化学反应性和机械响应。本文介绍了不受限制的Hartree-Fock理论的概念和算法,这些理论和算法用于考虑纳米石墨烯的磁性,通过逐步加氢的例子对其化学修饰以及可能通过碳骨架变形控制电子相关性。

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