the metallated compound exhibits enhanced conductivity compared to its unmodified form.
researchers developed a new metallated polymer with improved mechanical properties.
the metallated surface shows remarkable catalytic activity under mild conditions.
a metallated catalyst was employed to accelerate the cross-coupling reaction.
the metallated reagent enables selective functionalization of aromatic rings.
spectroscopic analysis confirmed the formation of the metallated species.
the metallated complex was characterized by x-ray crystallography.
the metallated film demonstrates excellent thermal stability.
gold nanoparticles were metallated to enhance their optical properties.
the metallated electrode exhibits high electrochemical activity.
the metallated interface displays enhanced electron transfer kinetics.
the metallated material shows promise for applications in sensing devices.
the metallated compound exhibits enhanced conductivity compared to its unmodified form.
researchers developed a new metallated polymer with improved mechanical properties.
the metallated surface shows remarkable catalytic activity under mild conditions.
a metallated catalyst was employed to accelerate the cross-coupling reaction.
the metallated reagent enables selective functionalization of aromatic rings.
spectroscopic analysis confirmed the formation of the metallated species.
the metallated complex was characterized by x-ray crystallography.
the metallated film demonstrates excellent thermal stability.
gold nanoparticles were metallated to enhance their optical properties.
the metallated electrode exhibits high electrochemical activity.
the metallated interface displays enhanced electron transfer kinetics.
the metallated material shows promise for applications in sensing devices.
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