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Figure 1 Morphology and optical features of bare SiNWs.
Their structure, morphology and optical property were investigated in detail.
without damaging the morphology and optical properties of the fragile p 6P nanofibers.
The effect of growth duration on the morphology and optical properties of NRAs has been investigated.
The morphology and optical properties of the obtained materials are investigated.
The crystal structure, surface morphology, and optical properties of the fine powders are critically examined.
Subsequently, the crystal structure, morphology and optical property of the composites were characterized.
The thermal stability, crystal structure, morphology and optical band gap were characterized.
Crystalline structure, morphology and optical properties were dependent on the concentration of bismuth.
The obtained polymorphs have been characterized in detail in their nanostructure, composition, morphology and optical properties.
SEM, TEM and optical tests confirmed the controlled morphology and optical transparency of the composites.
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patterns and optical
morphology and angle
morphology and fiber
morphology and fibre
morphology and light
morphology and graphical
morphology and mechanical
morphology and receptive
morphology and classical
morphology and clonogenic
morphology and dynamic
morphology and functional
morphology and mitochondrial
morphology and climatic
morphology and abnormal
morphology and other
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