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  5. Selective transport of water molecules through interlayer spaces in graphite
 
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Selective transport of water molecules through interlayer spaces in graphite

Source
arXiv
ISSN
2331-8422
Date Issued
2021-12-01
Author(s)
Saini, Lalita
Nemala, Siva Sankar
Rathi, Aparna
Kaushik, Suvigya
Kalon, Gopinadhan
Abstract
Interlayer space in graphite is impermeable to ions and molecules, including protons. Its controlled expansion would find several applications in desalination, gas purification, high-density batteries, etc. In the past, metal intercalation has been used to modify graphitic interlayer spaces; however, resultant intercalation compounds are unstable in water. Here, we successfully expanded graphite interlayer spaces by intercalating aqueous KCl ions electrochemically. The water conductivity shows several orders of enhancement when compared to unintercalated graphite. Water evaporation experiments further confirm the high permeation rate. There is weak ion permeation through interlayer spaces, up to the highest chloride concentration of 1 M, an indication of sterically limited transport. In these very few transported ions, we observe hydration energy-dependent selectivity between salt ions. These strongly suggest a soft ball model of steric exclusion, which is rarely reported. Our spectroscopy studies provide clear evidence for cation-{\pi} interactions, though weak anion-{\pi} interactions were also detectable. These findings improve our understanding of molecular and ionic transport at the atomic scale.
URI
http://arxiv.org/abs/2112.02826
https://d8.irins.org/handle/IITG2025/18403
Subjects
Mesoscale and Nanoscale Physics
Materials Science
Graphite
Graphite interlayer spaces
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