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Liquid properties in extended-nano channels: Substrate material
Conference paper

Liquid properties in extended-nano channels: Substrate material

Kazuma Mawatari, Norikazu Harada, Keisuke Ikeda, Yutaka Kazoe and Takehiko Kitamori
MicroTAS 2015 - 19th International Conference on Miniaturized Systems for Chemistry and Life Sciences, pp.1142-1144
2015

Abstract

Extended-nano channel Liquid property change Surface functional group Control and Systems Engineering
When the channel size was reduced to 10-100 nm space, which we call extended-nano space, various unique liquid properties were observed in SiO nanochannels for protonic solvents. SiOH groups on the substrate were verified to work as proton donors and affected the liquid property change. However, there is no investigation of the dependence on other proton-donor functional groups. In this presentation, the nanochannels were formed on a TiO material (photocatalytic material), which also included TiOH groups as proton donors and was expected to show the similar unique liquid properties. Finally, we verified that the viscosity increased for water confined in the TiO nanochannels as well. This results have a large impact on the nanofluidic sciences, when the various functional surface materials are used.

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