Huynh Nguyen Thi Xuan, Le Ong Kim, Dung Tran Phuong, Chihaia Viorel, Son Do Ngoc
Faculty of Natural Sciences, Quy Nhon University 170 An Duong Vuong Quy Nhon City Binh Dinh Province Vietnam.
Ho Chi Minh City University of Technology (HCMUT) 268 Ly Thuong Kiet Street, District 10 Ho Chi Minh City Vietnam
RSC Adv. 2023 May 23;13(23):15606-15615. doi: 10.1039/d3ra01588b. eCollection 2023 May 22.
CO capture is a crucial strategy to mitigate global warming and protect a sustainable environment. Metal-organic frameworks with large surface area, high flexibility, and reversible adsorption and desorption of gases are good candidates for CO capture. Among the synthesized metal-organic frameworks, the MIL-88 series has attracted our attention due to their excellent stability. However, a systematic investigation of CO capture in the MIL-88 series with different organic linkers is not available. Therefore, we clarified the topic two sections: (1) elucidate physical insights into the CO@MIL-88 interaction by van der Waals-dispersion correction density functional theory calculations, and (2) quantitatively study the CO capture capacity by grand canonical Monte Carlo simulations. We found that the 1π, 2σ/1π, and 2σ peaks of the CO molecule and the C and O p orbitals of the MIL-88 series are the predominant contributors to the CO@MIL-88 interaction. The MIL-88 series, , MIL-88A, B, C, and D, has the same metal oxide node but different organic linkers: fumarate (MIL-88A), 1,4-benzene-dicarboxylate (MIL-88B), 2,6-naphthalene-dicarboxylate (MIL-88C), and 4,4'-biphenyl-dicarboxylate (MIL-88D). The results exhibited that fumarate should be the best replacement for both the gravimetric and volumetric CO uptakes. We also pointed out a proportional relationship between the capture capacities with electronic properties and other parameters.
捕获二氧化碳是缓解全球变暖以及保护可持续环境的一项关键策略。具有大表面积、高柔韧性以及气体可逆吸附和解吸特性的金属有机框架是捕获二氧化碳的理想选择。在合成的金属有机框架中,MIL - 88系列因其出色的稳定性而引起了我们的关注。然而,目前尚无对具有不同有机连接体的MIL - 88系列中二氧化碳捕获情况的系统研究。因此,我们从两个方面对该课题进行了阐明:(1)通过范德华色散校正密度泛函理论计算来阐明二氧化碳与MIL - 88相互作用的物理见解;(2)通过巨正则蒙特卡罗模拟定量研究二氧化碳捕获能力。我们发现,二氧化碳分子的1π、2σ/1π和2σ峰以及MIL - 88系列的C和O p轨道是二氧化碳与MIL - 88相互作用的主要贡献因素。MIL - 88系列,即MIL - 88A、B、C和D,具有相同的金属氧化物节点,但有机连接体不同:富马酸盐(MIL - 88A)、1,4 - 苯二甲酸盐(MIL - 88B)、2,6 - 萘二甲酸盐(MIL - 88C)和4,4' - 联苯二甲酸盐(MIL - 88D)。结果表明,富马酸盐在重量法和体积法二氧化碳吸收方面应是最佳替代品。我们还指出了捕获能力与电子性质及其他参数之间的比例关系。