Journal article
Nanotechnology: Ion transport in complex layered Graphene-Based membranes with tuneable interlayer spacing
C Cheng, G Jiang, CJ Garvey, Y Wang, GP Simon, JZ Liu, D Li
Science Advances | AMER ASSOC ADVANCEMENT SCIENCE | Published : 2016
Open access
Abstract
Investigation of the transport properties of ions confined in nanoporous carbon is generally difficult because of the stochastic nature and distribution of multiscale complex and imperfect pore structures within the bulk material. We demonstrate a combined approach of experiment and simulation to describe the structure of complex layered graphene-based membranes, which allows their use as a unique porous platform to gain unprecedented insights into nanoconfined transport phenomena across the entire sub-10-nm scales. By correlation of experimental results with simulation of concentration-driven ion diffusion through the cascading layered graphene structure with sub-10-nm tuneable interlayer s..
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Awarded by Australian Research Council
Funding Acknowledgements
We acknowledge the financial support from the Australian Research Council (FT110100341, DP110100462, and DP130102512).