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Influence of hydrothermal reaction time on the supercapacitor performance of Ni-MOF nanostructures

M. Manikandan, Kaitong Cai, Yong Hu, Chen Li, J. T. Zhang, Yiding Zheng, Y. F. Liang, Hongmei Song, Mengfan Shang, X. N. Shi, Junxian Zhang, Shaoqian Yin, Shihao Shang, X. W. Wang

2021Applied Physics A49 citationsDOI

Topics & Concepts

Hydrothermal circulationSupercapacitorMetal-organic frameworkMaterials scienceNickelEnergy storageElectrodeHydrothermal reactionNanostructureChemical engineeringNanotechnologyHydrothermal synthesisElectrochemistryChemistryMetallurgyOrganic chemistryPhysical chemistryPhysicsQuantum mechanicsEngineeringAdsorptionPower (physics)Supercapacitor Materials and FabricationAdvanced battery technologies researchConducting polymers and applications
Influence of hydrothermal reaction time on the supercapacitor performance of Ni-MOF nanostructures | Litcius