Poly(tetrafluoroethylene)-stabilized
Pd nanoparticles (PTFE-PdNPs)
were prepared in water with 4-methylphenylboronic acid as a reductant
and characterized using powder X-ray diffraction, transmission electron
microscopy (TEM), X-ray photoelectron spectroscopy, and inductively
coupled plasma-atomic emission spectroscopy (ICP-AES). Small PdNPs
with a fairly uniform size were obtained in the presence of PTFE,
whereas aggregation of palladium was observed in the absence of PTFE.
PTFE-PdNPs showed high catalytic activity for the Suzuki coupling
reaction in water and were reused without any loss of activity. No
palladium species were observed by ICP-AES analysis in the reaction
solution after the reaction, nor was any change in particle size observed
after the recycle experiment. PTFE-PdNPs also exhibited excellent
catalytic activity and reusability for the Heck reaction in water.
Although palladium species were not detected in the reaction solution
after the reaction, aggregates and smaller sizes of PdNPs were observed
in the TEM image of the recovered catalyst. PTFE was also useful as
the stabilizer of rhodium nanoparticles (RhNPs) prepared by reduction
with NaBH
4
. PTFE-RhNPs showed high catalytic activity and
reusability toward arene hydrogenation under mild conditions.
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