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Molecular simulation of efficient removal of H2S pollutant by cyclodextrine functionalized CNTs

机译:环糊精官能化碳纳米管有效去除硫化氢污染物的分子模拟

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摘要

DFT>-D3 calculations were carried out to investigate interaction of H2S and CH4 between numerous functionalized CNTs (f-CNTs), including hydroxyl, carboxyl, and cyclodextrin groups as potential candidates for selective adsorption and elimination of toxic pollutants. It was found that pristine CNTs as well as nanotube surface of functionalized CNTs cannot stably adsorb the H2S molecule (adsorption energy of −0.17 eV). However, H2S adsorption was significantly enhanced with different magnitudes upon the functionalization of CNT. For f-CNTs, H2S adsorption was accompanied by releasing energies in the range between −0.34 to −0.54 eV where the upper limit of this range belongs to the cyclodextrin>-functionalized CNT (CD>-CNT) as the consequence of the existence of both dispersion and electrostatic interactions between the adsorbate and substrate. Findings also demonstrated a significantly weaker interaction between CH4 and CD>-CNT in comparison to the H2S molecule with adsorption energy of −0.14 eV. Electronic properties of the selected substrates revealed no significant changes in the inherent electronic properties of the CNTs after functionalizing and adsorbing the gas molecules. Moreover, DFTB-MD simulation demonstrated high adsorption capacity as well as CD>-CNT ability for H2S molecules against the CH4 one under ambient condition.
机译:进行了DFT >- D3计算,以研究H2S和CH4在众多官能化CNT(f-CNT)之间的相互作用,包括羟基,羧基和环糊精基团,它们是选择性吸附和消除有毒污染物的潜在候选物。发现原始碳纳米管以及功能化碳纳米管的纳米管表面不能稳定地吸附H2S分子(吸附能为-0.17 eV)。但是,在碳纳米管官能化后,H2S的吸附量显着增加。对于f-CNT,H2S吸附伴随释放能量的范围为-0.34至-0.54 eV,其中该范围的上限属于环糊精>-官能化的CNT(CD >-< / strong> CNT),这是由于被吸附物和底物之间存在分散和静电相互作用的结果。研究结果还表明,与H2S分子相比,CH4与CD >- CNT之间的相互作用明显弱,吸附能为-0.14 eV。在使气体分子官能化和吸附之后,所选基材的电子性质未显示CNT的固有电子性质发生明显变化。此外,DFTB-MD模拟显示了在环境条件下H2S分子对CH4的高吸附能力以及CD >- CNT的能力。

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