In situ/operando techniques reveal dynamic active sites and reaction pathways, advancing understanding of photocatalytic CO2 reduction with real-time insights into catalyst behavior.
Advanced Photocatalysis Techniques
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Surface hydroxyl groups on ZnAl-LDH enable rapid, eco-friendly degradation of pollutants via a non-radical pathway, achieving complete removal of nitenpyram within 5 minutes.
N/S co-doped carbon and oxygen vacancies in peony-like BiOBr enhance photocatalytic degradation of pollutants by over 90% under visible light.
Metal atom catalysts enable atomic-level control of nitrate-to-ammonia conversion, with recent systems achieving breakthroughs in activity and selectivity.
Carbon quantum dot-PVA films with optimized Stokes shift enhance photosynthesis, boosting Brassica juncea growth by up to 78% in indoor hydroponic systems.
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