首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >A Computational Exploration of H2S and CO2 Capture by Ionic Liquids Based on alpha-Amino Acid Anion and N-7,N-9-Dimethyladeninium Cation
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A Computational Exploration of H2S and CO2 Capture by Ionic Liquids Based on alpha-Amino Acid Anion and N-7,N-9-Dimethyladeninium Cation

机译:基于α-氨基酸阴离子和N-7,N-9-二甲基腺苷阳离子的离子液体捕获的H2S和CO2捕获的计算探索

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Hydrogen sulfide (H2S) and carbon dioxide (CO2) adsorption on a series of the aliphatic amino acid ionic liquids (AAILs) composed of N-7,N-9-dimethyladeninium cation with amino acid anions (AA = Gly, Ala, Val, Len, and Ile) as the functionalized ILs with dual groups of amine have been investigated. On the basis of the obtained data, the possible sites of H2S adsorption are twice those of CO, on the ionic liquids, and also the average adsorption energy of H2S Delta E = 51.5 kJ mol(-1)) in the most stable region of adsorption is twice greater than that of CO2 (Delta E = -25.5 kJ mol(-1). An increase in the length of the side chain of the amino acids increases the interaction energy of the H2S and CO2 capture (on the amine group of the [AA] anions). Quantum theory of atoms in molecules analysis confirmed the noncovalent nature of the N center dot center dot center dot C bond formed between CO2 and N atom in both of the amine groups and S-H center dot center dot center dot O and S-H center dot center dot center dot N bond critical points of H2S on [dMA] [AA]. Natural bond orbital analysis indicates that charge transfer in H2S adsorption is more important than CO2 capture. Finally, a correlation between the adsorption energy and the sum of stability energies (Sigma E(2)) in the most stable region has been obtained and discussed.
机译:硫化氢(H2S)和二氧化碳(CO2)在一系列脂族氨基酸离子液体(薯类)上吸附,由N-7,N-9-二甲基腺苷阳离子与氨基酸阴离子(AA = Gly,Ala,Val, LEN和ILE)作为具有双组胺的官能化ILS已经研究过。在所获得的数据的基础上,H 2 S吸附的可能位点是CO,离子液体上的CO的两倍,并且在最稳定的区域中,H2S DELTA E = 51.5kJ摩尔(-1)的平均吸附能量也是如此吸附量大于二氧化碳的两倍(Delta E = -25.5 kJ mol(-1)。氨基酸侧链的长度的增加会增加H2S和CO2捕获的相互作用能量(在胺基中[AA]阴离子)。分子分子中的原子的量子理论证实了在胺基团和SH中心点中心点中心点O的CO2和N原子之间形成的N中心点中心点中心点C键的非共价性质和Sh中心点中心点中心点N键[DMA] [AA]的H2S键临界点。National Bond轨道分析表明H2S吸附中的电荷转移比CO2捕获更重要。最后,吸附能量与吸附能量之间的相关性最多的稳定能量(Sigma E(2))的总和已经获得并讨论了表格区域。

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