Department of Physics and Chemistry1,272
Overview
Mankind has innovated through the ages through endless development of new materials, both simple and complex, rather than rely solely on materials that exist naturally in the environment. Material sciences are a backbone of human history as well as contemporary science and technology. The Department of Physics and Chemistry at DGIST seeks to contribute to the lives of future humanity by drawing on knowledge in chemistry and physics to develop new materials for the benet of all of humanity. In particular, the department is a leader in technology- intensive material sciences through convergence of chemistry, physics, materials and biosciences, producing the nanomaterials, functional materials, biomaterials, extreme materials and new drug materials that a high added value industry needs.Vision
- - Research in contemporary physics and chemistry for new materials development.
- - Frontier research in the eld of materials science with the aim to make contributions to humanity.
- - Produce creative researchers with scientic minds based on broad disciplines of science.
- - Development and education of globalized research capacity in Korea and setting the collaboration networks with global academic leaders.
Research and Education
- - Make progress in our understanding on diverse material systems through the modern experimental and theoretical studies and stay at the forefront of the material research.
- - Provide the frame for the multidisciplinary education of the next generation with the contemporary convergence research.
- - Research program at world-leading groups to promote international and multidisciplinary collaboration in materials science.
- - Annual student-led workshop for stimulating discussion and collaboration among students in different fields.
DGIST Department of Physics and Chemistry Homepage
- Asymmetric Organic Synthesis and Drug Synthesis Laboratory29
- Bio-Harmonized Device Lab62
- Bioinspired Organic Materials Laboratory36
- Biomimetic Materials Laboratory57
- Biomolecular & Protein Chemistry Laboratory2
- Chemical Design & Sustainable Catalysis10
- Computational Materials Theory Group38
- Correlated Matter Spectroscopy Lab3
- EDGE Lab0
- ETC15
- FemtoLab for Advanced Energy Materials14
- FIELD0
- Lab for NanoBio-Materials & SpinTronics108
- Micro Laser Laboratory53
- Molecular Inorganic Synthesis and Catalysis Lab1
- Nanospm Lab(Advanced Materials Research Group)15
- Novel Quantum Materials Laboratory21
- NPCL0
- Organic Semiconductor Design & Synthesis & Engineering Lab4
- Organic Synthesis & Catalysis Lab20
- Organic-Inorganic Hybrids Lab41
- Quantum Dynamics and Information Laboratory72
- Quantum Functional Materials Laboratory70
- Quantum Many-body Theory Group3
- Reaction Mechanism & Structural Dynamics Lab2
- Semiconductor Energy Sensor Laboratory47
- Semiconductor Quantum Photonics Lab.67
- SMALL LAB(Single Molecule Approaches to ceLL Lab)35
- Spin Nanotech Laboratory83
- Spin Phenomena for Information Nano-devices(SPIN) Lab113
- Superconducting quantum circuit lab0
- Supramolecular Inorganic Chemistry Laboratory51
- Sustainable Chemistry Laboratory11
- Theses250
- Topological Quantum Device Lab23
- Ultracold Atoms and Engineered Quantum Systems Group0
Subject
Date issued
- 2020 - 2026 656
- 2012 - 2019 479
Co-Author(s)
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Recent Submissions
- Equilibrium-driven decarbonylative multi-deuteration enables access to highly deuterated carbon frameworks
- Lessons from α-RuCl3 for pursuing quantum spin liquid physics in atomically thin materials
- Optimization of MuMax3 by Using Claude Code: A CUDA-Graph-Based Case Study in AI-Assisted Performance Engineering
- Development of a Three-Axis Planar Hall Magnetoresistance Sensor Using a Superparamagnetic Nanoparticle-Based Flux Guide
- SAFE: a Mix-and-Read Assay for miRNA Detection in Extracellular Vesicles From Unprocessed Plasma Toward Clinical Disease Diagnosis
