Results 201 to 210 of about 96,293 (288)
Solid Oxide Fuel Cell Which Can Work in Uniform-Gas Phase Using Partial Oxidation of Methane.
Takashi Hibino, Koichi Asano, H. Iwahara
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This work describes a novel approach to obtain composite submicrometric structures of nickel hexacyanoferrate integrating trigonal selenium with the aim of enhancing the catalytic efficiency in oxygen evolution reaction (OER). Interestingly, the nanostructures undergo a cube‐to‐sphere transition that optimizes surface properties, leading to superior ...
Edlind Lushaj+10 more
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Gd1 − x A x MnO3 (A = Ca and Sr) for the Electrode of Solid Oxide Fuel Cells [PDF]
Y. Takeda+7 more
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This study demonstrates that pulsed potential electrolysis significantly improves CO2 reduction performance on copper‐nitrogen doped carbon electrodes. The formation of cationic copper sites and metallic clusters as a function of applied intermittent potential leads to notable selectivity changes compared to potentiostatic reduction.
Dorottya Hursán+13 more
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Thermo-photo catalytic anode process for carbonate-superstructured solid fuel cells. [PDF]
Su H, Hu YH.
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A novel approach by depositing In2O3 onto an oxygen vacancy (OV)‐enriched support, ceria‐zirconia solid solutions (CZ), to activate synergistic effects is proposed. The OV contributes greatly to the dissociation of H2O and further promotes the hydrogenation of adsorbed CO2 species.
Ruirui Qi+10 more
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Correction: Indoor air pollution by solid fuel usages for cooking is longitudinally associated with possible sarcopenia in middle-aged Chinese population. [PDF]
Su GM+8 more
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Protophilic TiOx/Ti3C2Tz Nanosheets for Hyper‐Efficient Closed‐Loop Pd Recycling
Protophilic TiOx/Ti3C2Tz NSs enable selective Pd(II) recovery through in situ adsorption‐reduction into Pd(0) NPs from spent catalyst leachates and industrial wastewaters. The resulting Pd/NS composites are directly upcycled as efficient HER electrocatalysts or regenerated for reuse through controlled surface regeneration.
Youngkyun Jung+8 more
wiley +1 more source