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The structural properties, morphology, thermal decomposition process, and optical absorption of the nanocomposite were studied.
Samples were characterized to assess their thermal properties, morphology and crystalline structure features and textural properties.
These membranes were comprehensively characterized for their physicochemical properties, morphology, molecular interactions and crystallinity by sophisticated techniques.
These drug carriers were characterized with regard to their physicochemical properties, morphology, drug encapsulation efficiency and release kinetics in vitro.
Microspheres were prepared by a spray drying technique and characterised by physical properties, morphology and drug dissolution characteristics.
Thus, it allows controllable growth of diamond films with tailored properties (morphology, roughness, etc.).
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Their photophysical properties, morphologies and structures were investigated in detail.
The physical properties, morphologies and the crystal structure of the as-obtained foams were investigated.
The comparison of the magnetic properties, morphologies, and annealing temperature between the results of the CoFe2O4/SrFe12O19 nanocomposites is published by previous literatures.
To verify the simulation results, the PP/APP, PP/APP/APES and PP/APP/APESP composites were prepared to analyze mechanical properties, morphologies and flame retardancy.
The application of ammonium polyphosphate (APP) in different types of commodity thermoplastic composites (polyethylene, polypropylene (PP), polystyrene (PS), poly methyl methacrylate) (PMMA) and poly ethylene terephthalate) (PET)) have been discussed in terms of mechanical properties, morphologies and thermal properties.
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