Metal vanadium oxide particles

   
   

Laser pyrolysis can be used to produce directly metal vanadium oxide composite nanoparticles. To perform the pyrolysis a reactant stream is formed including a vanadium precursor and a second metal precursor. The pyrolysis is driven by energy absorbed from a light beam. Metal vanadium oxide nanoparticles can be incorporated into a cathode of a lithium based battery to obtain increased energy densities. Implantable defibrillators can be constructed with lithium based batteries having increased energy densities.

O pyrolysis do laser pode ser usado produzir diretamente nanoparticles do composto do óxido do vanadium do metal. Para executar o pyrolysis um córrego do reactant é dado forma including um precursor do vanadium e um segundo precursor do metal. O pyrolysis é dirigido pela energia absorvida de um feixe luminoso. Os nanoparticles do óxido do vanadium do metal podem ser incorporados em um cátodo de uma bateria baseada lítio para obter densidades aumentadas da energia. Os defibrillators implantable podem ser construídos com as baterias baseadas lítio que aumentam densidades da energia.

 
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