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Synergistically enhanced structural, thermal and interfacial stability of K0.45MnO2 via tailoring the local structure for high-energy and high-power potassium-ion batteries - ScienceDirect

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Synergistically enhanced structural, thermal and interfacial stability of K0.45MnO2 via tailoring the local structure for high-energy and high-power potassium-ion batteries - ScienceDirect

The local disorder induced by high-entropy doping results in highly stable  cathode materials for aqueous potassium-ion batteries - ScienceDirectThe local disorder induced by high-entropy doping results in highly stable cathode materials for aqueous potassium-ion batteries - ScienceDirect,Multi-dimensional engineering of transition metal dichalcogenides for  enhanced performance in fuel cell technologies - ScienceDirectMulti-dimensional engineering of transition metal dichalcogenides for enhanced performance in fuel cell technologies - ScienceDirect,Synergistically enhanced structural, thermal and interfacial stability of  K0.45MnO2 via tailoring the local structure for high-energy and high-power  potassium-ion batteries - ScienceDirectSynergistically enhanced structural, thermal and interfacial stability of K0.45MnO2 via tailoring the local structure for high-energy and high-power potassium-ion batteries - ScienceDirect,The local disorder induced by high-entropy doping results in highly stable  cathode materials for aqueous potassium-ion batteries - ScienceDirectThe local disorder induced by high-entropy doping results in highly stable cathode materials for aqueous potassium-ion batteries - ScienceDirect

 

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