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This device design efficiently converts the high surface area available in the conductive VA-SWNT electrode to space for energy storage while boasting a robust solid-state material framework that is versatile for use in a range of conditions not practical with current energy storage technology.
The as synthesized polymeric framework was characterized by solid state 13C-CPMAS and 15N NMR, FT-IR, Raman, SEM, TEM, UV-Vis aN2 N2 sorption isotherm.
Work carried out by Mali et al. in 2015 examined the distribution of linkers in a mixed biphenyl and bipyridyl dicarboxylic acid linker framework, through 1H and 13C solid state NMR (SSNMR) experiments [61].
Successful grafting of the organic moieties was confirmed using solid state 29Si MAS NMR spectroscopy, and the presence of the intact diatom framework by scanning electron microscopy.
Metal organic frameworks (MOFs), emerging as a new type of solid state porous material, have received intensive attention in academia and industry over the last two decades.
The luminescent properties of 1 and 2 have been investigated in the solid state at room temperature, indicating structure-dependent photoluminescent properties of the coordination frameworks.
The authenticity of the used organic framework and its metal complexes have been detected and observed in solid state as well as in aqueous solutions.
Metal organic framework in 1.H2O shows strong photoluminescence property at room temperature in solid state and emission spectra shows a blue shift of the peak in comparison to the free azino-quinoline ligand (L1).
13C solid state MAS-NMR, FT-IR and UV visible spectroscopic studies showed the presence of BTEC moieties in the framework.
It was a solid state.
The truth: They're solid state survivors.
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