The ICKRD features a diverse range of session tracks covering key research areas, emerging trends and interdisciplinary innovations within the field of Chemistry. Each track gives researchers, academicians, industry professionals and practitioners a platform to present their work, exchange ideas and explore the advancements shaping the future of the domain.
This conference contributes to global sustainability by aligning its research discussions and academic sessions with the United Nations Sustainable Development Goals, fostering knowledge exchange, innovation and collaborative engagement.
This track focuses on the foundational principles of chemical kinetics, including the derivation and application of rate laws. Discussions will encompass the influence of concentration, temperature, and catalysts on reaction rates.
This session explores the intricate details of reaction mechanisms and the pathways that chemical reactions follow. Emphasis will be placed on the identification and characterization of intermediates and transition states.
This track delves into the kinetics of catalytic reactions, highlighting the role of catalysts in enhancing reaction rates. Participants will discuss mechanistic insights and the implications for industrial applications.
This session examines transition state theory and its application in determining activation energies for various chemical reactions. Theoretical and experimental approaches to studying transition states will be highlighted.
This track focuses on the use of computational methods for kinetic simulations and modeling of chemical reactions. Participants will present advancements in algorithms and software that enhance the understanding of reaction dynamics.
This session investigates how temperature and pressure influence the kinetics of chemical reactions. Studies will include experimental data and theoretical models that elucidate these effects.
This track addresses the principles of chemical equilibria and their dynamic nature in reaction systems. Discussions will include the interplay between kinetics and thermodynamics in establishing equilibrium.
This session focuses on elementary reactions and the role of molecular collisions in determining reaction rates. Participants will explore collision theory and its implications for reaction dynamics.
This track examines energy profiles associated with chemical reactions and their significance in understanding reaction dynamics. Participants will discuss the relationship between energy changes and reaction pathways.
This session explores the kinetics of photochemical reactions and the mechanisms by which light influences chemical processes. Emphasis will be placed on experimental techniques and applications in photochemistry.
This track investigates the kinetics of surface reactions and their role in heterogeneous catalysis. Participants will discuss mechanisms, rate laws, and the impact of surface properties on reaction dynamics.