首页> 外文会议>XXVII Congress of the Mexican Society of Electrochemistry/5th Meeting of the ECS Mexican Section >Quantumchemical calculations of the structural stability of β-Cyclodextrin/Dopamine and β-Cyclodextrin/Ascorbic Acid systems
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Quantumchemical calculations of the structural stability of β-Cyclodextrin/Dopamine and β-Cyclodextrin/Ascorbic Acid systems

机译:β-环糊精/多巴胺和β-环糊精/抗坏血酸体系结构稳定性的量子化学计算

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摘要

A theoretical study of the complex formation and stability between β-cyclodextrin/dopamine (βCD/DA) and β-cyclodextrin/ascorbic acid (βCD/AA) was performed by means of quantum chemical calculations using Density Functional Theory (DFT). The B3LYP functional and the 6-31G (d) basis set were used for calculations under the so called all electrons scheme. The mechanistic considerations for interactions in both chemical systems were evaluated assuming entrance of either DA or AA into the ring of the guest molecule (βCD). According to our results, the most preferred orientations of βCD/DA system was obtained either when the DA catechol group or the amino group entered to the βCD ring, while for the βCD/AA system the most likely interaction occurred when AA functional groups, alcohol or lactone, entered to the βCD ring. Geometry, molecular energy and some electronic properties were obtained from calculations that led to determine the conformer's structural stability. The effect of acidic media was studied by setting pH values lower than 4.1 in which amino group of DA is protonated and carboxylic group of AA keeps its proton bonded. Vibrational frequencies for each reactant molecule as well as for complex system were calculated to ensure that obtained values corresponded to structures with minimal energy. The calculated IR spectra of conformers were analyzed to characterize the interaction between the host-guest complexes by means of its coupled vibrational frequencies. Theoretical UV spectra were calculated to verify the maximum UV absorption corresponding to fully protonated DA (H_3DA~+) and AA (H_2AA) species when located within the βCD ring and is compared with reported experimental data. The zero point energy values and enthalpy and Gibb's free energy were calculated and discussed.
机译:通过使用密度泛函理论(DFT)的量子化学计算,对β-环糊精/多巴胺(βCD/ DA)和β-环糊精/抗坏血酸(βCD/ AA)之间的络合物形成和稳定性进行了理论研究。 B3LYP官能团和6-31G(d)基组用于所谓的“所有电子”方案下的计算。假设DA或AA进入客体分子(βCD)的环中,评估了两个化学系统中相互作用的机理。根据我们的结果,当DA儿茶酚基或氨基进入βCD环时,获得了最优选的βCD/ DA系统取向,而对于βCD/ AA系统,当AA官能团,醇时最可能发生相互作用或内酯进入βCD环。通过计算获得几何构型,分子能和一些电子性质,从而确定构象异构体的结构稳定性。通过将pH值设置为低于4.1(其中DA的氨基被质子化,AA的羧基保持其质子键合)来研究酸性介质的作用。计算每个反应物分子以及复杂系统的振动频率,以确保获得的值对应于具有最小能量的结构。分析了构象异构体的红外光谱,以其耦合的振动频率表征客体-客体复合物之间的相互作用。计算理论UV光谱以验证位于βCD环内时对应于完全质子化DA(H_3DA〜+)和AA(H_2AA)物种的最大UV吸收,并将其与报告的实验数据进行比较。计算并讨论了零点能量值和焓以及吉布的自由能。

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  • 会议地点 Toluca(MX)
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    Division of Engineering in Nanotechnology. Polytechnical University of the Mexico Valley. Av. Mexiquense s, esquina Av. Universidad Politecnica, Col. Villa Esmeralda. C.P. 54910. Tultitlan Edo. De Mexico. MEXICO,Department of Materials, Autonomous Metropolitan University. Av. San Pablo No. 180, Col. Reynosa, C.P. 02200 D.F. MEXICO;

    Department of Materials, Autonomous Metropolitan University. Av. San Pablo No. 180, Col. Reynosa, C.P. 02200 D.F. MEXICO;

    Department of Materials, Autonomous Metropolitan University. Av. San Pablo No. 180, Col. Reynosa, C.P. 02200 D.F. MEXICO;

    Department of Chemistry, Autonomous Metropolitan University. Av. Michoacan y Purisima s Col. Vicentina, C.P. 09340 D.F. MEXICO;

    Department of Materials, Autonomous Metropolitan University. Av. San Pablo No. 180, Col. Reynosa, C.P. 02200 D.F. MEXICO;

    Division of Engineering in Nanotechnology. Polytechnical University of the Mexico Valley. Av. Mexiquense s, esquina Av. Universidad Politecnica, Col. Villa Esmeralda. C.P. 54910. Tultitlan Edo. De Mexico. MEXICO;

    Department of Materials, Autonomous Metropolitan University. Av. San Pablo No. 180, Col. Reynosa, C.P. 02200 D.F. MEXICO;

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