37314.5 Characterization of metal oxide nanopowder
It is based on measuring attractive or repulsive forces between a tip and the
sample. It is based on (1) sensitive detection (2) exible cantilever (3) sharp tip
(4) high resolution tip-sample positioning and (5) force feedback.
14.5.6 X-RAY DIFFRACTION STUDIES
It is an important technique used to identify the phase selection and crystalline state
of nanoparticle with reference to temperature. The intensity of the diffraction peaks
increases as the calcination temperature is increased. The broad diffraction peaks
support the absence of long-range order due to small particle size of the nanopo ...
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