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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Rotational Dynamics of Coumarin-153 and 4-Aminophthalimide in 1-Ethyl-3-methylimidazolium Alkylsulfate Ionic Liquids: Effect of Alkyl Chain Length on the Rotational Dynamics
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Rotational Dynamics of Coumarin-153 and 4-Aminophthalimide in 1-Ethyl-3-methylimidazolium Alkylsulfate Ionic Liquids: Effect of Alkyl Chain Length on the Rotational Dynamics

机译:1-乙基-3-甲基咪唑鎓烷基硫酸盐离子液体中香豆素153和4-氨基邻苯二甲酰亚胺的旋转动力学:烷基链长对旋转动力学的影响

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Rotational dynamics of two neutral organic solutes, coumarin-153 (C-153) and 4-aminophthalimide (AP), with only the latter having hydrogen-bond-donating ability, has been investigated in a series of l-ethyl-3-methylimidazoliurn alkyl sulfate ionic liquids as a function of temperature. The ionic liquids differ only in the length of the linear alkyl side chain (alkyl = ethyl, butyl, hexyl, and octyl) on the anionic moiety. The present study has been undertaken to examine the role of alkyl side chains on the rotational dynamics of the two solutes in these ionic liquids. Analysis of the results using Stokes—Einstein—Debye hydrodynamic theory indicates that the rotational dynamics of C-153 lies between the stick and slip boundary condition in the ethyl analogue and finally reaches subslip condition as in case of the octyl substituent. The observed rotational behavior of C-153 has been explained on the basis of an increase in the size of the solvent, which offers lower friction for solute rotation. On the other hand, AP shows superstick behavior in the ethyl system and exceeds the stick limit in the octyl derivative. Superstick behavior of AP has been attributed to the specific hydrogen-bonding interaction between AP and the sulfate moiety. Proton NMR investigation confirms the hydrogen-bonding interaction between the N—H hydrogen of AP and the ionic liquid. The decrease in rotational coupling constant values for AP with increasing length of alkyl side chains has been attributed to the decrease in the solute—solvent-specific interaction with an increase in the alkyl side chain length on the sulfate moiety.
机译:在一系列1-乙基-3-甲基咪唑啉中研究了两种中性有机溶质香豆素153(C-153)和4-氨基邻苯二甲酰亚胺(AP)的旋转动力学,其中后者仅具有氢键键合能力。烷基硫酸盐离子液体随温度的变化。离子液体仅在阴离子部分上的直链烷基侧链的长度(烷基=乙基,丁基,己基和辛基)不同。进行本研究以检查烷基侧链对这些离子液体中两种溶质的旋转动力学的作用。使用斯托克斯-爱因斯坦-德拜流体力学理论对结果进行分析,结果表明,C-153的旋转动力学位于乙基类似物的粘和滑移边界条件之间,并最终达到亚滑移条件(如辛基取代基的情况)。已根据溶剂尺寸的增加解释了C-153观察到的旋转行为,这为溶质旋转提供了更低的摩擦力。另一方面,AP在乙基体系中表现出超粘行为,并超过辛基衍生物的粘极限。 AP的超粘行为已经归因于AP和硫酸盐部分之间的特定氢键相互作用。质子NMR研究证实了AP的NH氢与离子液体之间的氢键相互作用。 AP的旋转偶合常数值随烷基侧链长度的增加而降低,这归因于溶质-溶剂特异性相互作用的降低以及硫酸盐部分上烷基侧链长度的增加。

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