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Effect of Li Termination on the Electronic and Hydrogen Storage Properties of Linear Carbon Chains: A TAO-DFT Study

机译:锂终止对线性碳链电子和氢存储特性的影响:TAO-DFT研究

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摘要

Accurate prediction of the electronic and hydrogen storage properties of linear carbon chains (Cn) and Li-terminated linear carbon chains (Li2Cn), with n carbon atoms (n = 5–10), has been very challenging for traditional electronic structure methods, due to the presence of strong static correlation effects. To meet the challenge, we study these properties using our newly developed thermally-assisted-occupation density functional theory (TAO-DFT), a very efficient electronic structure method for the study of large systems with strong static correlation effects. Owing to the alteration of the reactivity of Cn and Li2Cn with n, odd-even oscillations in their electronic properties are found. In contrast to Cn, the binding energies of H2 molecules on Li2Cn are in (or close to) the ideal binding energy range (about 20 to 40 kJ/mol per H2). In addition, the H2 gravimetric storage capacities of Li2Cn are in the range of 10.7 to 17.9 wt%, satisfying the United States Department of Energy (USDOE) ultimate target of 7.5 wt%. On the basis of our results, Li2Cn can be high-capacity hydrogen storage materials that can uptake and release hydrogen at temperatures well above the easily achieved temperature of liquid nitrogen.
机译:由于传统的电子结构方法,准确预测线性碳链(Cn)和具有n个碳原子(n = 5-10)的以锂为末端的线性碳链(Li2Cn)的电子和氢存储特性非常困难。存在强烈的静态相关效应。为了应对这一挑战,我们使用最新开发的热辅助占用密度泛函理论(TAO-DFT)研究了这些性质,这是一种非常有效的电子结构方法,用于研究具有强静态相关效应的大型系统。由于Cn和Li2Cn的反应性随n的变化,发现它们的电子性质具有奇偶振荡。与Cn相反,Li2Cn上H2分子的结合能在(或接近)理想的结合能范围内(每H2约20至40 kJ / mol)。此外,Li2Cn的H2重量存储容量在10.7至17.9%wt%的范围内,满足了美国能源部(USDOE)的最终目标7.5%wt%。根据我们的结果,Li2Cn可以是高容量储氢材料,可以在远高于容易达到的液氮温度的温度下吸收和释放氢。

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