Yueying Peng
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Comparative analysis of integrating different power cycles into a concentrated solar power plant
Electrical power plants rely heavily on fossil fuels, which contribute to environmental hazards such as carbon dioxide emissions and global warming. Alternatives like solar energy offer sustainable and continuous energy sources. Solar power generation represents one of the most promising technologies for producing power from renewable sources, having the lowest environmental impact compared to wind, biomass, geothermal, and other power plants [1,2].
Three-dimensional imaging of the microstructure of lithium metal anode using Xenon plasma focused ion beam
Keywords li metal anode three-dimensional imaging Xe plasma focused ion beam microstructure Introduction The pursuit for a low-carbon, sustainable society has driven the development of advanced battery technologies.
Extremely fast charging lithium-ion battery using bio-based polymer-derived heavily nitrogen doped carbon
Extremely fast charging lithium-ion battery using bio-based polymer-derived heavily nitrogen doped carbon† Extremely high nitrogen doped carbon was designed by facile pyrolysis of bio-based poly(2,5-benzimidazole) as a single source of nitrogen and carbon. For the first time ever, a carbon-based anode with ∼17 wt% of nitrogen doping with extremely fast charging (XFC) capability at 18.6 A g−1 and ultralong cyclability (3000 cycles) with 90% capacity retention was investigated.
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