구성원

교수진 소개

교수진 소개

jun-hee lee이준희

  • 슈퍼컴퓨터시뮬레이션
  • ALD박막합성강유전메모리
  • DRAM
  • 낸드플래쉬 소수촉매

연구주제

에너지 변환 양자 물질 연구

  • 연구분야슈퍼컴퓨터 시뮬레이션, ALD 박막 합성 강유전 메모리, DRAM, 낸드 플래쉬 수소촉매, 배터리, 태양전지, 연료전지
  • 연구실Quantum Materials for Energy Conversion Lab

반도체 ALD 박막 증착, DRAM 및 NAND 소자 제작, DFT 시뮬레이션

  • Inspiration from multiplexity of material properties
  • Preface
  • We have a number of functional properties that result from the jumps in properteis between the different phases
  • and the possibiltiy of switching between them by applied fields and stresses. This rich behavior results from the
  • coupling of magnetism, polarization, band gap and strain. In the last few lines of the letters, I’d like to focus
  • specifically on the coupling between polarizaiton and bandgap.
  • What is DFT tool?
  • Density functional theory (DFT) is a powerful quantum mechanical modelling method used in physics,chemistry and materials science to investigate the electronic structure (principally the ground state) of many-body systems, in particular atoms, molecules, and the condensed phases.
  • Using this theory, the properties of a many-electron system can be determined by using functionals.
  • Applications
  • In general, density functional theory finds increasingly broad application in the chemical and material sciences for the interpretation and prediction of complex system behavior at an atomic scale. Specifically, DFT computational methods are applied for the study of systems exhibiting high sensitivity to synthesis and processing parameters. In such systems, experimental studies are often encumbered by inconsistent results and non-equilibrium conditions. Examples of contemporary DFT applications include studying the effects of dopants on phase transformation behavior in oxides, magnetic behaviour in dilute magnetic semiconductor materials and the study of magnetic and electronic behavior in ferroelectrics and dilute magnetic semiconductors.

목록