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International Conference on Electronic Structure and Density Functional Theory

26th Dec – 27th Dec 2026 Geneva, Switzerland

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Conference Session Tracks

UN SDG Wheel

Aligned with UN Sustainable Development Goals

The conference's session tracks effectively support the following SDGs.

SDG 9 SDG 12
01 Advancements in Density Functional Theory +

This track will explore recent developments in density functional theory (DFT) methodologies, focusing on novel hybrid functionals and their applications. Participants are encouraged to present innovative approaches that enhance the accuracy and efficiency of DFT calculations.

02 Electronic Structure of Complex Materials +

This session will delve into the electronic structure of complex materials, including transition metal oxides and topological insulators. Discussions will center on the interplay between electronic properties and structural characteristics, utilizing advanced computational techniques.

03 Quantum Mechanics in Theoretical Chemistry +

This track focuses on the application of quantum mechanics to solve problems in theoretical chemistry, emphasizing wavefunction analysis and molecular orbital theory. Contributions should highlight the integration of quantum mechanical principles with computational methods.

04 Charge Density and Chemical Bonding +

This session will investigate the relationship between charge density distributions and chemical bonding in various molecular systems. Presenters are invited to share insights on how charge density analysis can elucidate bonding characteristics and reactivity.

05 Computational Methods for Spectroscopy +

This track will cover the application of computational methods to interpret and predict spectroscopic properties of molecules. Emphasis will be placed on the synergy between theoretical predictions and experimental results in spectroscopy.

06 Ab Initio Calculations and Their Applications +

This session will focus on ab initio computational methods and their applications in predicting molecular properties and behaviors. Researchers are encouraged to present case studies that demonstrate the effectiveness of ab initio approaches in various chemical contexts.

07 Band Structure and Electronic Transitions +

This track will explore the theoretical underpinnings of band structure calculations and their implications for electronic transitions in solids. Contributions should address the role of band structure in determining material properties and phenomena.

08 Potential Energy Surfaces and Reaction Dynamics +

This session will examine the construction and analysis of potential energy surfaces (PES) in relation to reaction dynamics. Presenters are invited to discuss methodologies for mapping PES and their applications in understanding chemical reactions.

09 Basis Set Optimization in Computational Chemistry +

This track will focus on the optimization of basis sets in computational chemistry, highlighting strategies to improve computational accuracy. Participants are encouraged to present novel techniques and their impact on the reliability of computational results.

10 Theoretical Approaches to Molecular Energy Levels +

This session will delve into theoretical approaches for calculating molecular energy levels and their significance in chemical reactivity. Contributions should emphasize the interplay between theory and experimental validation of energy level predictions.

11 Exchange-Correlation Functionals in DFT +

This track will focus on the development and application of exchange-correlation functionals within density functional theory. Researchers are invited to present advancements that enhance the performance of these functionals in various chemical systems.