首页> 外文期刊>Journal of Molecular Structure >Effect of ion interactions on the IR spectrum of benzenesulfonate ion. Restoration of sulfonate ion symmetry in sodium benzenesulfonate dimer
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Effect of ion interactions on the IR spectrum of benzenesulfonate ion. Restoration of sulfonate ion symmetry in sodium benzenesulfonate dimer

机译:离子相互作用对苯磺酸根离子红外光谱的影响。苯磺酸钠二聚体中磺酸根离子对称性的恢复

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摘要

Literature data concerning the assignment of IR spectra of benzenesulfonate salts that serve as model compounds for aromatic sulfonate-containing ionomers and polyelectrolytes have been analyzed. The structures and IR spectra of free benzenesulfonate ion and its potassium and sodium salts have been calculated in B3LYP/6-311G(d,p) approximation. The bidentate coordination of counter-ions is energetically favorable for isolated ion pairs. In this coordination, the symmetry of sulfonate ion changes noticeably, which manifests itself as strong splitting of calculated vibrational modes of asymmetric stretching vibrations of S-O bonds, Delta v(as)(SO3) = 154 cm(-1) (K) and 180 cm(-1) (Na). For sodium benzenesulfonate it is thermodynamically favorable to form a dimer (Delta G degrees = -37.6 kcal/mol) in which the joint effects of monodentate and bidentate coordinated Na cations result in equalization of S-O bond lengths and thus a considerable restoration of C(3)v symmetry of the sulfonate ion. The IR spectrum of the dimer in which Delta v(as)(SO3) splitting is considerably smaller much better matches the experimental spectrum than the spectrum of an isolated ion pair. The major absorption bands in the IR spectrum of sodium benzenesulfonate have been assigned to theoretical vibrational modes of the dimer and, based on visualization of modes, to vibrations of certain bonds in the anion. In particular, the bands at 1200 and 1186 cm(-1) have been assigned to v(as)(SO3), that at 1049 cm(-1) to v(s)(SO3), and those at 628 and 572 cm(-1) to delta((oop))(SO3), and delta(ip)as(SO3), respectively. The strong effect of sulfonate ion environment on the positions of the absorption bands of stretching vibrations of S-O bonds makes it necessary to obtain data on exact structures of ion clusters for reliable assignment of absorption bands in experimental IR spectra of real sulfonate-containing systems. (C) 2016 Elsevier B.V. All rights reserved,
机译:分析了与用作含芳族磺酸盐的离聚物和聚电解质的模型化合物的苯磺酸盐的红外光谱的归属相关的文献数据。游离苯磺酸根离子及其钾盐和钠盐的结构和红外光谱已通过B3LYP / 6-311G(d,p)近似计算。抗衡离子的双齿配位在能量上有利于分离的离子对。在这种配合下,磺酸根离子的对称性发生显着变化,这表现为计算出的SO键不对称拉伸振动的振型强烈分裂,Delta v(as)(SO3)= 154 cm(-1)(K)和180 cm(-1)(Na)。对于苯磺酸钠而言,形成二聚体(Delta G度= -37.6 kcal / mol)在热力学上是有利的,在该二聚体中,单齿和双齿配位的Na阳离子的共同作用导致SO键长度的均等化,从而显着恢复了C(3 )v磺酸根离子的对称性。 Delta v(as)(SO3)裂解的二聚体的红外光谱要比孤立的离子对的光谱更好地匹配实验光谱。苯磺酸钠在红外光谱中的主要吸收带已分配给二聚体的理论振动模式,并且基于模式的可视化,已将其分配给阴离子中某些键的振动。特别是,将1200和1186 cm(-1)处的波段分配给v(as)(SO3),将1049 cm(-1)处的波段分配给v(s)(SO3),以及628和572 cm处的波段。 (-1)至delta((oop))(SO3)和delta(ip)as(SO3)。磺酸盐离子环境对S-O键拉伸振动吸收带位置的强烈影响,使得有必要获取有关离子簇确切结构的数据,以便可靠地分配含磺酸盐的真实系统的实验IR光谱中的吸收带。 (C)2016 Elsevier B.V.保留所有权利,

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