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Doping of alkali, alkaline-earth, and transition metals in covalent-organic frameworks for enhancing CO_2 capture by first-principles calculations and molecular simulations

机译:通过第一性原理计算和分子模拟在共价有机骨架中掺杂碱金属,碱土金属和过渡金属,以增强CO_2的捕集

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摘要

We use the multiscale simulation approach, which combines the first-principles calculations and grand canonical Monte Carlo simulations, to comprehensively study the doping of a series of alkali (Li, Na, and K), alkaline-earth (Be, Mg, and Ca), and transition (Sc and Ti) metals in nanoporous covalent organic frameworks (COFs), and the effects of the doped metals on CO_2 capture. The results indicate that, among all the metals studied, Li, Sc, and Ti can bind with COFs stably, while Be, Mg, and Ca cannot, because the binding of Be, Mg, and Ca with COFs is very weak. Furthermore, Li, Sc, and Ti can improve the uptakes of CO_2 in COFs significantly. However, the binding energy of a CO_2 molecule with Sc and Ti exceeds the lower limit of chemisorptions and, thus, suffers from the difficulty of desorption. By the comparative studies above, it is found that Li is the best surface modifier of COFs for CO_2 capture among all the metals studied. Therefore, we further investigate the uptakes of CO_2 in the Li-doped COFs. Our simulation results show that at 298 K and 1 bar, the excess CO_2 uptakes of the Li-doped COF-102 and COF-105 reach 409 and 344 mg/g, which are about eight and four times those in the nondoped ones, respectively. As the pressure increases to 40 bar, the CO_2 uptakes of the Li-doped COF-102 and COF-105 reach 1349 and 2266 mg/g at 298 K, respectively, which are among the reported highest scores to date. In summary, doping of metals in porous COFs provides an efficient approach for enhancing CO_2 capture.
机译:我们使用多尺度模拟方法,结合了第一性原理计算和经典蒙特卡洛模拟,全面研究了一系列碱(Li,Na和K),碱土(Be,Mg和Ca)的掺杂),纳米多孔共价有机骨架(COF)中的过渡金属(Sc和Ti),以及掺杂金属对CO_2捕获的影响。结果表明,在所有研究的金属中,Li,Sc和Ti可以稳定地与COFs结合,而Be,Mg和Ca则不能,因为Be,Mg和Ca与COFs的结合非常弱。此外,Li,Sc和Ti可以显着提高COF中CO_2的吸收。然而,CO 2分子与Sc和Ti的结合能超过化学吸附的下限,因此具有解吸的困难。通过以上比较研究,发现在所有研究的金属中,Li是捕获CO_2的最佳COF表面改性剂。因此,我们进一步研究了掺锂的COF中CO_2的吸收。我们的模拟结果表明,在298 K和1 bar下,掺Li的COF-102和COF-105的过量CO_2吸收达到409和344 mg / g,分别是未掺杂Li和COF-102的八倍和四倍。 。随着压力增加到40 bar,掺锂的COF-102和COF-105在298 K时的CO_2吸收分别达到1349和2266 mg / g,这是迄今为止报道的最高分。总之,在多孔COF中掺杂金属提供了增强CO_2捕获的有效方法。

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