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Non-Equilibrium Transport of Strongly Correlated Electrolytes in Nanopores: Fundamentals and Applications

Non-Equilibrium Transport of Strongly Correlated Electrolytes in Nanopores: Fundamentals and Applications
纳米孔中强相关电解质的非平衡传输:基础与应用
批准号:
1461842
负责人:
Rui Qiao
金额:
$29.93万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-30 至 2018-06-30

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中文摘要
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英文摘要
This proposal sets out a goal to understand the dynamics of nanopore-Room Temperature Ionic Liquids (RTIL) interactions better, in order to improve the ability to design better supercapacitors for energy-storage. The specific objective of this research is to investigate, using atomistic simulations, the electrically-driven transport of RTILs in nanopores and its applications in the charging dynamics of supercapacitors. Success of this project can help the development of new energy-storage approaches by providing a better understanding of the fundamentals of RTILs in super-capacitors that use nanoporous materials. The PI has an active plan to train undergraduates, participate in K-12 outreach activities, and to publicly share the PI?s Molecular Dynamics codes for modeling charged interfaces, which is an efficient way of disseminating the outcome of this research.
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Collaborative Research: Electrotunable and Curvature-Dependent Friction at Nanoscale Contacts Lubricated by Ionic Liquids
Collaborative Research: Structure and Thermodynamics of Ionic Liquids at Solid Surfaces: the Return of Water
Collaborative Research: Precise and Dexterous Single-Particle Manipulation Using Non-uniform AC Magnetic Fields
Nanofluidics Foundation for Shale Gas Recovery
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