Between Scylla and Charybdis: Hydrophobic Graphene-Guided Water Diffusion on Hydrophilic Substrates

  • Kim, Jin-Soo
  • Choi, Jin Sik
  • Lee, Mi Jung
  • Park, Bae Ho
  • Bukhvalov, Danil
  • ... Cheong, Hyeonsik
  • 외 6명
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초록

The structure of water confined in nanometer-sized cavities is important because, at this scale, a large fraction of hydrogen bonds can be perturbed by interaction with the confining walls. Unusual fluidity properties can thus be expected in the narrow pores, leading to new phenomena like the enhanced fluidity reported in carbon nanotubes. Crystalline mica and amorphous silicon dioxide are hydrophilic substrates that strongly adsorb water. Graphene, on the other hand, interacts weakly with water. This presents the question as to what determines the structure and diffusivity of water when intercalated between hydrophilic substrates and hydrophobic graphene. Using atomic force microscopy, we have found that while the hydrophilic substrates determine the structure of water near its surface, graphene guides its diffusion, favouring growth of intercalated water domains along the C-C bond zigzag direction. Molecular dynamics and density functional calculations are provided to help understand the highly anisotropic water stripe patterns observed.

키워드

FORCENANOTUBESFRICTIONMICAICE
제목
Between Scylla and Charybdis: Hydrophobic Graphene-Guided Water Diffusion on Hydrophilic Substrates
저자
Kim, Jin-SooChoi, Jin SikLee, Mi JungPark, Bae HoBukhvalov, DanilSon, Young-WooYoon, DuheeCheong, HyeonsikYun, Jun-NyeongJung, YousungPark, Jeong YoungSalmeron, Miquel
DOI
10.1038/srep02309
발행일
2013-07-30
유형
Article
저널명
Scientific Reports
3