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Pore-size dependent THz absorption of nano-confined water
12
Citations
24
References
2015
Year
Molecular SieveThz PhotonicsPore StructureEngineeringNanoporous MaterialNanomaterialsNanotechnologySurface ScienceApplied PhysicsThz AbsorptionTerahertz TechniquePorosityPhysical ChemistryInterfacial StudyChemistryDifferent Pore SizesLiquid WaterNano-confined Water
We performed a THz absorption spectroscopy study on liquid water confined in mesoporous silica materials, MCM-41-S-18 and MCM-41-S-21, of two different pore sizes at room temperatures. We found that stronger confinement with a smaller pore size causes reduced THz absorption, indicating reduced water mobility due to confinement. Combined with recent theoretical studies showing that the microscopic structure of water inside the nanopores can be separated into a core water region and an interfacial water region, our spectroscopy analysis further reveals a bulk-water-like THz absorption behavior in the core water region and a solid-like THz absorption behavior in the interfacial water region.
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