Nonenzymatic electrochemical sensor based on metal oxide, MO (M= Cu, Ni, Zn, and Fe) nanomaterials for neurotransmitters: An abridged review. Sensors International, 1, 100047. 2020.https://doi.org/10.1016/j.sintl.2020.100047
Structural transformation and high negative dielectric constant behavior in (1-x) (Al0⋅2La0⋅8TiO3) þ (x) (BiFeO3) (x ¼ 0.2–0.8) nanocomposites, Physics-E,122,2020. https://doi.org/10.1016/j.physe.2020.114204
Simultaneous detection of dopamine, tyrosine and ascorbic acid using NiO/graphene modified graphite electrode, Bio. Res. In App. Chem, 10(3) 5599,2020. DOI:10.33263/BRIAC103.599609
Electrochemical detection of dopamine and tyrosine using metal oxide (MO, M=Ni or Cu) modified graphite electrode: a comparative study, Bio. Res. In App. Chem, 10(5) 6460, 2020. DOI:10.33263/BRIAC105.64606473
Synthesis of Flower-Like, Hyperbranched Na3FePO4CO3 Nanocrystals and Their Electrochemical Performance as Cathodes in Aqueous Rechargeable Sodium-Ion Batteries Journal of The Electrochemical Society,168, 080523,2021. DOI: 10.1149/1945-7111/ ac1d02
Expertise
Design of Electrochemical sensors for health and environmental monitoring
Synthesis of nanomaterials for aqueous and non aqueous sodium ion batteries
Organic structures for electrochemical sensors
Authored Books
Book Chapter 1: Electrochemical aspects of metal-organic frameworks Metal-Organic Frameworks
Book Chapter 2: Permeable metal-organic frameworks for fuel (gas) storage applications Metal-Organic Frameworks for Chemical Reactions, Vol , I , B 111-E 126
Book chapter 3: Manganese-Based Materials for Zn Batteries Zinc Batteries: Basics, Developments, and Applications, Vol -, I -, B 37-E 50
Book Chapter 4: Advanced Ceramics for Thermodelectric Power Generation Applications of Advanced Ceramics in Science, Technology, and Medicine, Vol 3, I , B 39-E 50
Book chapter 5: Marine Corrosion Corrosion Science: Modern Trends and Applications, Vol , I , B 174-E 202