Prussian Blue Analogues for Non-Aqueous Sodium-Ion and Potassium-Ion Batteries: The Landscape From Lab-Scale Optimizations Toward Practical Applications. [PDF]
Mei Y, Nason CAF, Xu Y.
europepmc +1 more source
Bismuth nanoparticles embedded in a carbon skeleton as an anode for high power density potassium-ion batteries. [PDF]
Hao Z +8 more
europepmc +1 more source
The work presents an innovative method for the preparation of mesoporous carbon materials (MCs) from highly graphitized carbon quantum dots. The zinc‐ion hybrid capacitors assembled with MCs deliver high rate performance and stability, providing promising advancements for future energy storage solutions.
Guoli Zhang +6 more
wiley +1 more source
Enabling High-Performance Electrode Materials for Potassium-Ion Batteries: Ionic Transport, Size and Electro-Chemo-Mechanical Effects. [PDF]
Zhu C, Fu Y, Yang Y.
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Insight into a Nitrogen-Doping Mechanism in a Hard-Carbon-Microsphere Anode Material for the Long-Term Cycling of Potassium-Ion Batteries. [PDF]
Chen C, Zhao K, La M, Yang C.
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The Dimensional Revolution of Phosphorus: From Allotropicity to Battery System Applications
Phosphorus‐based materials are promising high‐capacity anodes classified by dimension (0D–3D) to systematically explore their properties and composite strategies. When combined with materials such as carbon to form heterostructures, the electrical conductivity and stability are effectively enhanced.
Shuhan Zhang +8 more
wiley +1 more source
Regulating the Microstructure of the Layered Oxide Cathode through the Annealing Process for High-Performance Potassium-Ion Batteries. [PDF]
Liu X +5 more
europepmc +1 more source
State-of-the-art anodes of potassium-ion batteries: synthesis, chemistry, and applications. [PDF]
Li P +6 more
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Low‐temperature carbonization and sulfur doping increase defect density and tailor surface area, enabling the formation of a thinner, more stable SEI, enhancing rate performance and the ICE. The S/C composite delivers an ICE of 83.1% and 480 mAh g−1 at 0.1 A g−1, retaining 232.6 mAh g−1 at 5 A g−1 for SIBs and achieves a considerable capacity of 439.2 ...
Jiahao Zhao +7 more
wiley +1 more source
Characterisation and modelling of potassium-ion batteries. [PDF]
Dhir S +9 more
europepmc +1 more source

