BIOELECTROCHEMICALLY ENHANCED DEGRADATION OF BISPHENOL S: MECHANISTIC INSIGHTS FROM STABLE ISOTOPE-ASSISTED INVESTIGATIONS

Bioelectrochemically enhanced degradation of bisphenol S: mechanistic insights from stable isotope-assisted investigations

Summary: Electroactive microbes is the driving force for the bioelectrochemical degradation of organic pollutants, but the underlying microbial interactions between electrogenesis and pollutant degradation have not been clearly identified.Here, we combined stable isotope-assisted metabolomics (SIAM) and skin of the flayed one 13C-DNA stable isotope

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Efficiency droop suppression of distance-engineered surface plasmon-coupled photoluminescence in GaN-based quantum well LEDs

Ag coated microgroove with extreme large aspect-ratio of 500:1 was fabricated on p-GaN capping layer to investigate the coupling behavior 9002nc between quantum wells and surface plasmon in highly spatial resolution.Significant photoluminescence enhancement was observed when the distance between Ag film and QWs was reduced from 220 nm to about 20 n

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