Density-functional theory studies of the calculation method for catalyst and the material’s energy barrier밀도범함수 이론 기반 촉매 계산 방법론 및 물질의 에너지 장벽 연구

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dc.contributor.advisorKim, Hyung Jun-
dc.contributor.advisor김형준-
dc.contributor.authorHan, Myung Hoon-
dc.date.accessioned2021-05-11T19:39:43Z-
dc.date.available2021-05-11T19:39:43Z-
dc.date.issued2019-
dc.identifier.urihttp://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=871528&flag=dissertationen_US
dc.identifier.urihttp://hdl.handle.net/10203/283354-
dc.description학위논문(박사) - 한국과학기술원 : 화학과, 2019.8,[viii, 93 p. :]-
dc.description.abstractFirst-principles based density functional theory (DFT) is a total energy theory, which provides a wealth of understanding on the electronic structures of materials, with a reasonable computational cost, however has several limitations apart from its efficiency. It is the inaccuracy in the calculation of material’s band gap and size difference of computable theoretical size of nanoparticles and the size in experiments, which is one of the difficulties in catalyst calculation. To improve this, we used self-consistent hybrid DFT and Hubbard model to calculate structural and electrical characteristics of titanium dioxide, and compared the results with formal DFT and experimental results. Also, we developed improved cluster expansion model to investigate the CO2 reduction reaction of real size gold nanoparticle. We found out that improved model shows good agreement with formal experimental data. In addition, using the DFT theory, we investigate magnetocrystalline anisotropy energy of rare-earth free hard magnet and phase transition mechanism of PVDF.-
dc.languageeng-
dc.publisher한국과학기술원-
dc.subjectDensity functional theory▼aband gap▼ananoparticle▼amagnetocrystalline anisotropy▼aphase transition-
dc.subject밀도범함수이론▼a띠간격▼a나노입자▼a자기이방성▼a상변화-
dc.titleDensity-functional theory studies of the calculation method for catalyst and the material’s energy barrier-
dc.title.alternative밀도범함수 이론 기반 촉매 계산 방법론 및 물질의 에너지 장벽 연구-
dc.typeThesis(Ph.D)-
dc.identifier.CNRN325007-
dc.description.department한국과학기술원 :화학과,-
dc.contributor.alternativeauthor한명훈-
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CH-Theses_Ph.D.(박사논문)
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