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疏水性-亲水性纳米通道中电场诱导的乙醇-水混合物的结构与动力学

Electric-field-induced structure and dynamics of an ethanol-water mixture in hydrophobic-hydrophilic nanochannels.

作者信息

Ghosh Abir, Swain Sunandini, Metya Atanu K

机构信息

Department of Chemical Engineering & Technology, Indian Institute of Technology (BHU) Varanasi, Varanasi 221005, India.

Department of Chemical and Biochemical Engineering, Indian Institute of Technology Patna, Patna-801106, India.

出版信息

Phys Chem Chem Phys. 2024 Oct 30;26(42):26834-26841. doi: 10.1039/d4cp02993c.

Abstract

Understanding the behavior of confined fluid mixtures under external electric fields is essential for advancing scientific knowledge and improving a wide range of technological applications, from energy systems to biological processes. An electric field has been widely used to investigate the phase transition of water and modification of interfacial water at the nanoscale. However, the structure and dynamics of the interfacial layer in complex confined fluid mixtures, such as ethanol-water mixtures, remain unexplored under the influence of an electric field. In this study, we explore the structural and dynamic behavior of binary ethanol-water mixtures confined within slit-like hydrophilic (mica) and hydrophobic (graphene) nanochannels under an external electric field using classical molecular dynamics (MD) simulations. We find two distinct interfacial water layers near the hydrophilic mica surface, and a more pronounced sharp peak appears near the hydrophobic graphene sheet with increasing electric field. The density maxima of the -OH and -CH groups of ethanol shift towards and away from the graphene surface with an increasing electric field. Our simulations reveal that the electric field strongly impacts the inter and intralayer hydrogen bonding among water and ethanol molecules. The diffusion coefficient of water slightly increases with the electric field and then reduces with an electric field for a lower concentration of ethanol. This finding reveals that the electric field influences the desorption of interfacial water near the hydrophilic mica surface, which can be an implication for diverse technological applications like modifying surface wettability.

摘要

了解受限流体混合物在外部电场作用下的行为对于推进科学知识以及改善从能源系统到生物过程等广泛的技术应用至关重要。电场已被广泛用于研究水的相变以及纳米尺度下界面水的改性。然而,在电场影响下,诸如乙醇 - 水混合物等复杂受限流体混合物中界面层的结构和动力学仍未得到探索。在本研究中,我们使用经典分子动力学(MD)模拟,探索了在外部电场作用下,限制在狭缝状亲水性(云母)和疏水性(石墨烯)纳米通道内的二元乙醇 - 水混合物的结构和动力学行为。我们在亲水性云母表面附近发现了两个不同的界面水层,并且随着电场增加,在疏水性石墨烯片附近出现了一个更明显的尖锐峰。随着电场增加,乙醇的 -OH 和 -CH 基团的密度最大值朝着并远离石墨烯表面移动。我们的模拟表明,电场强烈影响水和乙醇分子之间的层间和层内氢键。对于较低浓度的乙醇,水的扩散系数随电场略有增加,然后随电场降低。这一发现表明,电场影响亲水性云母表面附近界面水的解吸,这可能对诸如改变表面润湿性等各种技术应用具有启示意义。

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