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甲多巴[(S)-2-氨基-3-(3,4-二羟基苯基)-2-甲基丙酸]与受体(氯代邻苯二甲酸酐、邻氯代醌和二氯代二氰基苯醌)在乙腈中的荷移络合物的光谱、傅里叶变换红外光谱和理论研究及其热力学性质。

Spectrophotometric, Fourier transform infrared spectroscopic and theoretical studies of the charge-transfer complexes between methyldopa [(S)-2 amino-3-(3,4-dihydroxyphenyl)-2-methyl propanoic acid] and the acceptors (chloranilic acid, o-chloranil and dichlorodicyanobenzoquinone) in acetonitrile and their thermodynamic properties.

机构信息

Vivekananda Mahavidyalaya, Haripal, Hooghly, West Bengal, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2012 Jun 15;92:212-24. doi: 10.1016/j.saa.2012.02.072. Epub 2012 Feb 25.

Abstract

Methyldopa is a much used antihypertensive drug. It is the subject matter of study mostly for the determination and estimation of methyldopa in pharmaceutical properties. These considerations led us to study the charge-transfer interactions between methyldopa, a centrally acting antihypertensive agent of limited use with the known acceptors like o-chloranil (o-ClN), chloranilic acid (ClA) and dichlorodicyanobenzoquinone (DDQ). Methyldopa (MDP) formed beautifully colored complexes (having absorption maxima at 581 nm and 368 nm; 519 nm; 583.5 nm, 547 nm and 346 nm, respectively) with the acceptors mentioned before. The physico-chemical properties of the complexes were studied using UV-visible spectrophotometry and FTIR measurements. The composition, the accurate association constants and thermodynamics of the complexes were determined spectrophotometrically. Attempts were made to interpret the thermodynamics of complexes in terms of I(D)(V), E(A)(V) and hν(CT). Solid CT complexes between MDP+o-ClN, MDP+ClA and MDP+DDQ were prepared and FTIR spectra of the complexes were studied. The energies hν(CT) of the charge-transfer complexes and vertical ionization potential I(D)(V) of methyldopa were compared with the theoretical values of hν(CT) obtained from HOMO and LUMO of the donors and acceptors calculated using Density Function Theory utilizing different basis sets. The agreement between the results can be regarded to be reasonable. Oscillator strengths and dipole strengths of the complexes were determined theoretically and experimentally and the limitations of the calculations were outlined.

摘要

盐酸甲基多巴是一种常用的降压药。它主要是作为研究对象,用于测定和评估药物性质中的盐酸甲基多巴。这些考虑促使我们研究了盐酸甲基多巴与已知受体(如邻氯蒽醌(o-ClN)、氯代邻苯二甲酸(ClA)和二氯二氰基对苯醌(DDQ))之间的荷移相互作用。盐酸甲基多巴(MDP)与上述受体形成了美丽的配合物(在 581nm 和 368nm;519nm;583.5nm、547nm 和 346nm 处有吸收最大值)。利用紫外可见分光光度法和傅里叶变换红外光谱(FTIR)测量研究了配合物的物理化学性质。通过分光光度法确定了配合物的组成、准确的结合常数和热力学参数。尝试根据 I(D)(V)、E(A)(V)和 hν(CT)来解释配合物的热力学。制备了 MDP+o-ClN、MDP+ClA 和 MDP+DDQ 之间的固态 CT 配合物,并研究了配合物的 FTIR 光谱。比较了电荷转移配合物的能量 hν(CT)和盐酸甲基多巴的垂直电离势 I(D)(V)与通过密度泛函理论(利用不同的基组)计算得到的供体和受体的 HOMO 和 LUMO 理论值 hν(CT)。结果之间的一致性可以认为是合理的。通过理论和实验确定了配合物的振子强度和偶极强度,并概述了计算的局限性。

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