含氧官能团对活性炭吸附甲酚影响的密度泛函理论计算

Surfaces Pub Date : 2022-05-02 DOI:10.3390/surfaces5020020
A. Supong, U. Sinha, D. Sinha
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引用次数: 3

摘要

采用密度泛函理论(DFT)计算研究了对甲酚在活性炭吸附剂上的吸附机理以及氧官能团对甲酚吸附的具体作用。所有与DFT计算相关的能量计算和几何优化都是在ε = 80(对应于水)的介电介质中,在理论基集6-31g水平上使用B3LYP混合泛函进行的。研究了甲酚与原始活性炭、羟基功能化活性炭、羰基功能化活性炭和羧基功能化活性炭的相互作用,其吸附能分别为- 416.47 kJ/mol、- 54.73 kJ/mol、- 49.99 kJ/mol和- 63.62 kJ/mol。高吸附能表明甲酚-活性炭吸附过程具有化学吸附性质。在含氧官能团中,羧基对吸附过程的影响大于羟基和羰基,这是由于羧基活性炭与甲酚之间同时形成两种类型的氢键。本研究结果可为未来设计具有更好吸附甲酚性能的活性炭提供有价值的见解。
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Density Functional Theory Calculations of the Effect of Oxygenated Functionals on Activated Carbon towards Cresol Adsorption
The mechanism of adsorption of p-cresol over activated carbon adsorbent and the specific role of oxygen functional groups on cresol adsorption were studied using density functional theory (DFT) calculations. All the energy calculations and geometry optimization pertaining to DFT calculations were done using the B3LYP hybrid functional at basis set 6-31g level of theory in a dielectric medium of ε = 80 (corresponding to water). The interaction of cresol with different activated carbon models, namely pristine activated carbon, hydroxyl functionalized activated carbon, carbonyl functionalized activated carbon, and carboxyl functionalized activated carbon, were considered, and their adsorption energies corresponded to −416.47 kJ/mol, −54.73 kJ/mol, −49.99 kJ/mol, and −63.62 kJ/mol, respectively. The high adsorption energies suggested the chemisorptive nature of the cresol-activated carbon adsorption process. Among the oxygen functional groups, the carboxyl group tended to influence the adsorption process more than the hydroxyl and carbonyl groups, attributing to the formation of two types of hydrogen bonds between the carboxyl activated carbon and the cresol simultaneously. The outcomes of this study may provide valuable insights for future directions to design activated carbon with improved performance towards cresol adsorption.
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