We present a cleaner chemical synthesis process of a magnetic recoverable Au/CoFe2O4 hybrid nanocomposite catalyst that has remarkable activity in catalytic reduction and oxidation, improved by surface plasmon resonance.
We present the use of in-situ Raman spectroscopy within optofluidic hollow-core photonic crystal fibers to monitor reactions involving photo-induced electron transfer processes, demonstrating their utility to better understand mechanisms of photochemical reactions.
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