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Upon heating, lead telluride and lead sulfide show the formation of a less symmetric, dipolar structure.
Relaxation and unfreezing of these areas at heating lead to enhancing of molecular mobility and increasing of the material volume.
Continued heating lead to a slow increase in the absorption intensity and a successive blueshift of the surface plasmon resonance bands, indicating that the synthesized NPs were mostly composed of elemental Au.
:2 PbO + PbS → 3 Pb + SO2 Heating lead carbonate with hydrogen fluoride yields the hydrofluoride, which decomposes to the difluoride when it melts.
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Heating leads to aggregation of particles.
Conductive heating leads to completely different nanocrystals, although rhombic in shape.
On the other hand, desorption of water molecules by heating leads to a blueshift.
In summer, intense solar heating leads to scorching temperatures over the Asian land masses.
It was stated that the vacuum heating leads to the increase of electrochemical activity.
Besides, heating leads to decrease of the low-temperature (30 60 °C) side of all the α(T) curves.
Further heating leads to a melting recrystallisation process that transforms the γ-phase into the zigzag or β-phase.
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