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石墨烯电极附近氨基酸离子液体的分子动力学模拟:烷基侧链长度的影响

Molecular dynamics simulation of amino acid ionic liquids near a graphene electrode: effects of alkyl side-chain length.

作者信息

Sadeghi Moghadam Behnoosh, Razmkhah Mohammad, Hamed Mosavian Mohammad Taghi, Moosavi Fatemeh

机构信息

Department of Chemical Engineering, Ferdowsi University of Mashhad, Mashhad 9177948944, Iran.

Department of Chemistry, Ferdowsi University of Mashhad, Mashhad 9177948974, Iran.

出版信息

Phys Chem Chem Phys. 2016 Dec 7;18(48):33053-33067. doi: 10.1039/c6cp06659c.

Abstract

Electric double layer (EDL) supercapacitors, using ionic liquid electrolytes, have been receiving a great deal of attention in response to the growing demand for energy storage systems. In the present study, the nanoscopic structure of amino acid ionic liquids (AAILs) as biodegradable electrolytes near a neutral graphene surface was studied by molecular dynamics (MD) simulation. In order to explore the influence of the anion type and structure, the effect of the alkyl side-chain length of amino acids on the EDL was investigated. The results for the AAILs, composed of 1-ethyl-3-methylimidazolium ([EMIM]) cations near alanine ([ALA]) and isoleucine ([ILE]) anions, were compared to a conventional electrolyte, [EMIM][PF]. A lower mobility of AAIL compared to [EMIM][PF], with diffusions as low as 10 m s, was observed. The structural results demonstrated a layered structure near the surface and most of the adsorbed imidazolium cation rings lay flat on the graphene surface. Both MD and quantum computations were performed to shed light on the charge behavior of AAIL electrolytes. As the current results demonstrate, an increase in the anion side-chain length leads to a decrease in both the number of adsorbed ions on the surface and the thickness of the first adsorbed layer. More impressively, it was observed that a low charge concentration in the EDL of AAILs is due to more side-side interactions. This remarkable feature could introduce AAILs as more efficient electrolyte materials than conventional [EMIM][PF].

摘要

随着对储能系统需求的不断增长,使用离子液体电解质的双电层(EDL)超级电容器受到了广泛关注。在本研究中,通过分子动力学(MD)模拟研究了作为可生物降解电解质的氨基酸离子液体(AAILs)在中性石墨烯表面附近的纳米结构。为了探究阴离子类型和结构的影响,研究了氨基酸烷基侧链长度对双电层的影响。将由丙氨酸([ALA])和异亮氨酸([ILE])阴离子附近的1-乙基-3-甲基咪唑鎓([EMIM])阳离子组成的AAILs的结果与传统电解质[EMIM][PF]进行了比较。观察到与[EMIM][PF]相比,AAIL的迁移率较低,扩散速度低至10 m s。结构结果表明表面附近存在层状结构,并且大多数吸附的咪唑鎓阳离子环平躺在石墨烯表面上。进行了MD和量子计算以阐明AAIL电解质的电荷行为。正如当前结果所示,阴离子侧链长度的增加导致表面吸附离子数量和第一吸附层厚度的减少。更令人印象深刻的是,观察到AAILs双电层中的低电荷浓度是由于更多的侧面相互作用。这一显著特征可能使AAILs成为比传统[EMIM][PF]更有效的电解质材料。

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