Where Green Hydrogen Goes First: Why Location Could Make or Break the Clean Fuel Transition
A new Nature Energy analysis argues that designing hydrogen policies around geography — matching cheap renewable production sites to dense ...
A new Nature Energy analysis argues that designing hydrogen policies around geography — matching cheap renewable production sites to dense ...
A comprehensive new review details how two-dimensional MXene nanomaterials are advancing high-performance supercapacitors and electrocatalytic water splitting for sustainable energy ...
A University of the Basque Country study finds that the future global green hydrogen trade must balance economic, environmental and ...
Researchers have created a single-layer, edge-sharing 1T-RuO2 catalyst that achieves an ultralow 77 mV overpotential and over 1,100 hours of ...
A systematic study of well-defined nickel surfaces reveals how nickel oxide, nickel hydride, and nickel hydroxide species each contribute to ...
Researchers show that adding an optimized amount of Ti3C2Tx MXene to NiCo2O4 spinel dramatically improves the catalyst that limits the ...
Researchers show that saccharin additives refine the microstructure of electrodeposited nickel-cobalt thin films and markedly boost their hydrogen evolution performance ...
In situ Raman spectroscopy and calculations reveal that bands once assigned to superoxides on nickel anodes actually arise from NiO2 ...
A self-supported porous MnFeCoNiCu high-entropy alloy efficiently catalyzed acidic hydrogen evolution for 100 hours after its pore network and surface ...
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© 2025 Scienmag - Science Magazine