• Title of article

    Systematic Review of Electrochemical Stability and Performance Enhancement in Energy Storage and Analytical Applications

  • Author/Authors

    Zainul ، Rahadian Department of Chemistry - Faculty of Mathematics and Natural Sciences - Universitas Negeri , Rafika ، Rafika Department of Chemistry - Faculty of Mathematics and Natural Sciences - Universitas Negeri , Hasanudin ، Hasanudin Department of Chemistry - Faculty of Mathematics and Natural Science - Universitas Sriwijaya , Laghari ، Imtiaz Ali Department of Electrical Engineering - Quaid-e-Awam University of Engineering, Science and Technology, Campus Larkana , Hamdani ، Dadan M Hamdani Mining Operations Department - PT Andal Kirana Raya , Mapanta ، Jerri Mining Infrastructure Department - PT Bara Blasting Perkasa , Handayana ، Raden Haris Explosives Manufacture department - PT. Bara Blasting Perkasa , Delson ، Doche Department of Planning Controlling Production, Unit Of Production Support, Section OF Aternative Fuel Raw Material - PT Semen Padang , Mandeli ، Riso Sari Postgraduate Programme - Universitas Negeri Padang , Putra ، Hasriwan Research Center for Transportation Technology - National Research And Innovation Agency (BRIN) , Sravan ، Metla Sai Bhavani Department of Biomedical Engineering - National Cheng Kung University , Azril ، Azril Department of Biomedical Engineering - National Cheng Kung University , Adeyi ، Abel Adekanmi Department of Chemical and Petroleum Engineering - Afe Babalola University Ado-Ekiti (ABUAD) , Saefulloh ، Saefulloh Department of Biological Sciences - Graduate School of Science and Technology - Shizuoka University

  • From page
    198
  • To page
    216
  • Abstract
    This systematic review critically examines recent advancements in electrochemical materials and methodologies for enhancing stability and performance in energy storage and analytical applications. The review encompasses a diverse range of topics, including the thermodynamic analysis of cathode-contacting material stability, nanostructure-modified electrodes for detecting emerging contaminants, electrochemical stability of Zn anodes, long-term cycling of inorganic Ca(NO3)2 salt electrodes, chemically modified electrode interactions for signal transduction, self-assembled iron oxide nanoparticle-modified electrodes for simultaneous Cd(II) and Pb(II) ion stripping analysis, molecularly imprinted polymers based electrochemical sensors for catecholamine neurotransmitter determination, amino acid-fabricated glassy carbon electrodes for simultaneous sensing of heavy metal ions, and silver nanoparticles coupled with graphene nanoplatelets for detecting Rhodamine B in food products. By systematically analyzing these advancements, this review offers insights into the diverse strategies employed to enhance electrochemical system stability and sensitivity, serving as a valuable reference for researchers and engineers working in energy storage and analytical electrochemistry fields.
  • Keywords
    Electrochemical stability , Nanomaterial modification , Energy storage , Analytical detection , Emerging contaminants
  • Journal title
    Asian Journal of Green Chemistry
  • Journal title
    Asian Journal of Green Chemistry
  • Record number

    2754076