Publication | Closed Access
Confinement in Carbon Nanospace-Induced Production of KI Nanocrystals of High-Pressure Phase
96
Citations
24
References
2011
Year
NanosheetEngineeringKi NanocrystalsChemistryNanoscale ChemistryCarbon-based MaterialHigh PressureCarbon Nanospace-induced ProductionNanostructure SynthesisOutstanding Compression FunctionMaterials ScienceMaterials EngineeringNanotechnologyNanocrystalline MaterialHigh-pressure PhaseKi CrystalsNanomaterialsApplied PhysicsMaterial Preparation
An outstanding compression function for materials preparation exhibited by nanospaces of single-walled carbon nanohorns (SWCNHs) was studied using the B1-to-B2 solid phase transition of KI crystals at 1.9 GPa. High-resolution transmission electron microscopy and synchrotron X-ray diffraction examinations provided evidence that KI nanocrystals doped in the nanotube spaces of SWCNHs at pressures below 0.1 MPa had the super-high-pressure B2 phase structure, which is induced at pressures above 1.9 GPa in bulk KI crystals. This finding of the supercompression function of the carbon nanotubular spaces can lead to the development of a new compression-free route to precious materials whose syntheses require the application of high pressure.
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