IIRD maintains uninterrupted academic processes despite the current global situation. Participants can share and publish their research through web-based and hybrid participation options.
SDG 3 — Good Health and Well-being
SDG 6 — Clean Water and Sanitation
SDG 7 — Affordable and Clean Energy
This track focuses on the latest developments in electrochemical energy storage systems, including batteries and supercapacitors. Researchers are invited to present innovative materials and designs that enhance energy density, efficiency, and longevity.
This session explores novel electrode materials that improve performance in energy storage and conversion applications. Contributions should highlight synthesis methods, characterization techniques, and practical applications of these materials.
This track delves into the fundamental aspects of redox reactions that underpin electrochemical processes. Papers should address reaction mechanisms, kinetics, and their implications for energy storage technologies.
This session emphasizes the role of electrocatalysis in enhancing the efficiency of energy conversion processes. Participants are encouraged to share insights on catalyst design, performance evaluation, and real-world applications.
This track investigates the ionic transport phenomena that influence the performance of electrochemical systems. Research contributions should focus on modeling, experimental studies, and the impact of ionic mobility on device efficiency.
This session highlights recent advancements in electrochemical sensors for environmental monitoring and biomedical applications. Presentations should cover sensor design, sensitivity, selectivity, and real-world implementation.
This track addresses the critical role of electrochemical interfaces in determining the performance of energy storage and conversion devices. Discussions will focus on interfacial phenomena, stability, and strategies for interface optimization.
This session explores the mechanisms of charge transfer in various electrochemical processes. Researchers are invited to present studies that elucidate the factors affecting charge transfer rates and their implications for device performance.
This track focuses on the application of cyclic voltammetry in characterizing electrochemical systems. Contributions should highlight methodological advancements and novel applications in energy storage and conversion.
This session examines the stability of electrochemical systems and the degradation mechanisms that affect their performance over time. Papers should provide insights into failure modes and strategies for enhancing longevity.
This track invites contributions on computational modeling and simulation techniques used to study electrochemical processes. Emphasis will be placed on predictive modeling, validation, and applications in energy storage systems.