Engineering the novel MoSe2-Mo2C hybrid nanoarray electrodes for energy storage and water splitting applications
Author:
Funder
Mid-career Researcher Program
Dongguk University
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,General Environmental Science,Catalysis
Reference76 articles.
1. Public perceptions of and responses to new energy technologies;Boudet;Nat. Energy,2019
2. Integrated quasiplane heteronanostructures of MoSe2/Bi2Se3 hexagonal nanosheets: synergetic electrocatalytic water splitting and enhanced supercapacitor performance;Yang;Adv. Funct. Mater.,2017
3. Vertically aligned MoS2/Mo2C hybrid nanosheets grown on carbon paper for efficient electrocatalytic hydrogen evolution;Zhao;ACS Catal.,2017
4. Direct synthesis of thickness-tunable MoS2 quantum dot thin layers: optical, structural and electrical properties and their application to hydrogen evolution;Vikraman;Nano Energy,2017
5. Metal-organic framework derived Co3O4/MoS2 heterostructure for efficient bifunctional electrocatalysts for oxygen evolution reaction and hydrogen evolution reaction;Muthurasu;Appl. Catal. B,2019
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