Data‐Guided Photocatalysis: Supervised Machine Learning in Water Splitting and CO2 Conversion
This review highlights recent advances in supervised machine learning (ML) for photocatalysis, emphasizing methods to optimize photocatalyst properties and design materials for solar‐driven water splitting and CO2 reduction. Key applications, challenges, and future directions are discussed, offering a practical framework for integrating ML into the ...
Paul Rossener Regonia +1 more
wiley +1 more source
An electron bridge strategy is developed to regulate charge polarization in Pd1 and Ni1 dual single‐atom sites, promoting CO2 reduction, nitrate reduction, and C–N coupling simultaneously. The resulting catalyst achieves efficient urea electrosynthesis with high activity and record durability over 1700 h.
Fan Wu +11 more
wiley +2 more sources
The potential role of nitrogen dioxide inhalation in Parkinson's disease. [PDF]
Li H +5 more
europepmc +1 more source
This review highlights recent advances in automated iPSC culture systems integrating robotics, advanced imaging, artificial intelligence, and process control. These technologies improve reproducibility, scalability, and quality in cell expansion, differentiation, and real‐time monitoring, while emerging AI‐enabled and closed‐loop approaches offer new ...
Hyoryong Lee +3 more
wiley +1 more source
Retraction notice to "The comparison between in-situ monitored data and modelled results of nitrogen dioxide (NO<sub>2</sub>): case-study, road networks of Kigali city, Rwanda" [Heliyon 8 (2022) e12390]. [PDF]
Irankunda E +9 more
europepmc +1 more source
Environmental burden of disease resulting from long-term nitrogen dioxide exposure in Germany. [PDF]
Sell P, Plass D, Kienzler S, Zeeb H.
europepmc +1 more source
Enhanced Nitrogen Dioxide Detection Using Resistive Graphene-Based Electronic Sensors Modified with Polymers of Intrinsic Microporosity. [PDF]
Goodwin DM +4 more
europepmc +1 more source
Vacuum‐Induced Surface Reconstruction of Mn–Ce Oxides for Low‐Temperature Coupled Redox Catalysis
Near‐surface reconstruction enhances low‐temperature redox catalysis in Mn–Ce mixed oxides. Sequential vacuum annealing and reduced‐pressure O2 treatment enrich Mn near the surface while preserving the CeO2 fluorite framework, promoting interfacial electron redistribution, oxygen activation, and redox cycling.
Yong Yin +5 more
wiley +1 more source
Adsorption of Nitrogen Dioxide on Nitrogen-Enriched Activated Carbons. [PDF]
Bazan-Wozniak A +4 more
europepmc +1 more source

