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Hybrid Event

23rd - 24th June 2026 | Malaga, Spain

International Conference on Advances in Reaction Pathway Analysis (ICARPA - 26)

4

Days

4

Hrs

07

Min

02

Sec

Conference Program

Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

Why it matters

SDG 4 — Quality Education
SDG 9 — Industry, Innovation and Infrastructure
SDG 12 — Responsible Consumption and Production
SDG 13 — Climate Action
Explore All Session Tracks
Track 01
Advancements in Reaction Pathway Analysis Techniques

This track focuses on the latest methodologies and technologies employed in reaction pathway analysis. Contributions may include novel computational approaches and experimental techniques that enhance our understanding of reaction mechanisms.

Track 02
Theoretical Approaches to Chemical Kinetics

This session will explore theoretical frameworks that underpin chemical kinetics, including rate laws and reaction orders. Papers are encouraged to discuss the implications of these theories on practical applications in various chemical processes.

Track 03
Potential Energy Surfaces: Insights and Applications

This track will delve into the construction and interpretation of potential energy surfaces in chemical reactions. Participants are invited to present studies that illustrate the significance of these surfaces in predicting reaction outcomes.

Track 04
Transition State Theory: Recent Developments

This session aims to highlight recent advancements in transition state theory and its applications in reaction pathway analysis. Contributions may include theoretical innovations and experimental validations that enhance our understanding of transition states.

Track 05
Molecular Dynamics Simulations in Reaction Mechanisms

This track will focus on the role of molecular dynamics simulations in elucidating complex reaction mechanisms. Authors are encouraged to present case studies that demonstrate the power of these simulations in predicting reaction pathways.

Track 06
Energy Barriers and Reaction Intermediates

This session will examine the relationship between energy barriers and the formation of reaction intermediates. Papers should discuss methodologies for calculating energy barriers and their implications for reaction kinetics.

Track 07
Computational Modeling in Theoretical Chemistry

This track will explore the latest advancements in computational modeling techniques within the field of theoretical chemistry. Contributions may include discussions on software developments, algorithm improvements, and their applications in reaction pathway analysis.

Track 08
Quantum Chemistry Approaches to Catalysis

This session will focus on the application of quantum chemistry methods to understand catalytic processes. Authors are invited to present research that elucidates the role of catalysts in modifying reaction pathways and energy profiles.

Track 09
Chemical Reactivity and Pathway Optimization

This track will explore strategies for optimizing reaction pathways to enhance chemical reactivity. Contributions may include theoretical studies and computational approaches aimed at improving reaction efficiency and selectivity.

Track 10
Kinetic Modeling of Complex Chemical Systems

This session will focus on kinetic modeling approaches for complex chemical systems, including multi-step reactions and feedback mechanisms. Authors are encouraged to present models that provide insights into the dynamic behavior of these systems.

Track 11
Thermodynamic Analysis of Reaction Pathways

This track will examine the thermodynamic principles that govern reaction pathways and their implications for chemical transformations. Papers should discuss the interplay between thermodynamics and kinetics in understanding reaction feasibility.

2026 UPDATE

Consistent Academic Support

Science Net ensures that research activities continue without interruption in the current global situation. Participants can engage through digital and hybrid conference formats.