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Hybrid Event

8th - 9th December 2026 | Dhaka, Bangladesh

International Conference on Theoretical Methods in Solid-State Chemistry (ICTMSSC - 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 9 — Industry, Innovation and Infrastructure
SDG 12 — Responsible Consumption and Production
Explore All Session Tracks
Track 01
Advancements in Crystal Structure Prediction

This track focuses on the latest theoretical methods and algorithms for predicting crystal structures in solid-state chemistry. Contributions will explore innovative approaches and their applications in materials design.

Track 02
Electronic Structure Theory: Techniques and Applications

This session will delve into the various electronic structure theories employed in solid-state chemistry, including density functional theory and many-body perturbation theory. Participants are encouraged to present novel applications and comparative studies of these methods.

Track 03
Band Structure Calculations: Methods and Insights

This track examines the methodologies used in band structure calculations and their implications for understanding electronic properties of materials. Researchers are invited to share their findings on the relationship between band structure and material performance.

Track 04
Ab Initio Methods in Solid-State Chemistry

This session highlights the application of ab initio methods in the study of solid-state systems. Discussions will include advancements in computational techniques and their impact on material characterization.

Track 05
Molecular Modeling in Materials Science

This track focuses on the role of molecular modeling in understanding the properties and behaviors of solid-state materials. Contributions will address both theoretical advancements and practical applications in materials design.

Track 06
Lattice Dynamics and Phonon Calculations

This session explores the theoretical approaches to lattice dynamics and phonon calculations in periodic systems. Researchers are encouraged to discuss the implications of phonon behavior on thermal and mechanical properties.

Track 07
Solid-State Simulations: Techniques and Challenges

This track addresses the various simulation techniques used in solid-state chemistry, including molecular dynamics and Monte Carlo methods. Participants will discuss the challenges faced in simulating complex materials and propose solutions.

Track 08
Quantum Chemistry Approaches in Solid-State Systems

This session focuses on the integration of quantum chemistry methods in the study of solid-state systems. Contributions will highlight innovative applications and theoretical advancements in this interdisciplinary field.

Track 09
Computational Physics in Material Design

This track examines the intersection of computational physics and materials design, emphasizing theoretical methods that inform experimental approaches. Researchers are invited to share insights on how computational techniques can guide the development of new materials.

Track 10
Defect Chemistry in Solid-State Materials

This session will explore theoretical methods for studying defect chemistry in solid-state materials, including the impact of defects on electronic properties. Contributions will focus on both fundamental studies and practical implications.

Track 11
Surface Chemistry and Theoretical Approaches

This track investigates the theoretical methods used to study surface chemistry in solid-state materials. Participants are encouraged to present their findings on how surface interactions influence material properties and reactivity.

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.