High‐entropy perovskite nanofibers serve as robust and active bifunctional air electrodes in reversible protonic ceramic electrochemical cells. Their compositional complexity stabilizes the lattice, enriches oxygen vacancies, and accelerates surface exchange.
Hyeonggeun Kim +4 more
wiley +1 more source
Photosynthesis of CO from CO<sub>2</sub> with an iron polypyridyl catalyst at a passivated silicon photoelectrode. [PDF]
Bein GP +5 more
europepmc +1 more source
An advanced F‐doped and ─CN group co‐modified FCCN is developed. Due to the synergistic effects of co‐modification in promoting photogenerated exciton generation, enhancing charge kinetics, expanding active interfacial areas, and optimizing CO2 interfacial reactions, the FCCN photocatalyst demonstrates excellent catalytic performance and high ...
Sheng‐Qi Guo +9 more
wiley +1 more source
Laboratory Quantification of Gaseous Emission from Alternative Fuel Combustion: Implications for Cement Industry Decarbonization. [PDF]
Rivera Sasso O +7 more
europepmc +1 more source
Prediction of Fuel Efficiency Using Machine Learning Algorithms
Krishnanunni R.Nair, Manbir Kaur
openalex +1 more source
Application of information technologies, including quantum chemistry methods, in creating high-efficiency fuel compositions [PDF]
A.G. Molokanov +2 more
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Robust Bio‐Textiles Via Mycelium‐Cellulose Interface Engineering
This work introduces a new class of sustainable textiles by growing mycelium, the root‐like structure of fungi, into cellulose‐based fabrics. This semi‐interpenetrating mycelium‐cellulose fiber network combines the strength and breathability of natural fibers with the water‐resistant and adhesive properties of mycelium, resulting in a robust, scalable,
Wenhui Xu +7 more
wiley +1 more source
An experimental approach varying piston geometry for optimization of diesel engine performance and emissions using prioritized clustering approach. [PDF]
Alshammari S +6 more
europepmc +1 more source
Extreme Value Statistics Suggest Enhanced Fuel Implosion Efficiency Using Seven Sequential Sets of 26 Lasers Compared to Simultaneous Firing of 192 Lasers at NIF [PDF]
Motohisa Osaka
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Herein, the topochemical transformation of cobalt‐based layered hydroxides into nanocomposites is investigated using advanced real‐time characterization techniques combined with thermogravimetric analysis. The study reveals how interlayer carboxylic acids direct the transformation pathway, highlighting the role of carbon content and anion length. These
Camilo Jaramillo‐Hernández +5 more
wiley +1 more source

