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한국교원대학교 화학교육과

대학원

학과소개

교수진소개

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한국교원대학교 첨단연구중심과 - 이론과 실제를 두루 갖춘 우수교사의 양성에 전력

교원대학교 화학교육과 송기형 교수님 상세소개
사진 구분 내용

송기형 교수님사진

Name Kihyung Song, Ph. D.
Occupation Professor
Present Address Department of Chemistry Korea National University of Education Chongwon, Chungbuk 363-791
Korea Telephone 011-82-43-230-3733
Fax 011-82-43-232-7176
Email ksong@pchem.knue.ac.kr

학력

  1. - 1981년 : B. S. in Chemistry, Seoul National University, Seoul, Korea
  2. - 1989년 : Ph. D. in Chemistry, Texas Tech University, Lubbock Texas
  3. - 1989년 : Supervisor: Professor Walter J. Chesnavich
  4. - 1989년 : Dissertation: Phase-Space Theory, Variational Transition State Theory, and Classical Trajectory
         Studies of Gas-Phase Chemical Reactions

경력

  1. - 1989.9 - 1993.9 : Assistant Professor
  2. - 1993.10 - 1998.9 : Associate Professor
  3. - 1998.10 - : Professor (Tenured)
  4. - 1998.10 - : Department of Chemistry
  5. - 1998.10 - : Korea National University of Education
  6. - 1998.10 - : Chongwon, Chungbuk 363-791 KOREA

주요연구실적

◈ Collaborative Research Activities with American Universities

  1. - 1989.5-1989.8ostdoctoral fellow, Texas Tech University Professor Walter J. Chesnavich
  2. - 1989.12-1990.2Visiting Scholar, Texas Tech University Professor Walter J. Chesnavich
  3. - 1992.6-1992.8Visiting Scholar, Oklahoma State University Professor Donald L. Thompson
  4. - 1994.3-1995.2Visiting Research Scientist, Wayne State University
  5. - 1995.6-1995.8Visiting Research Scientist, Wayne State University
  6. - 1996.6-1996.8Visiting Research Scientist, Wayne State University
  7. - 1997.6-1997.8Visiting Research Scientist, Wayne State University
  8. - 1998.6-1998.8Visiting Research Scientist, Wayne State University
  9. - 1999.6-1999.8Visiting Research Scientist, Wayne State University Professor William L. Hase
  10. - 2001.1-2002.2Visiting Research Scientist, Wayne State University Professor William L. Hase
  11. - 2002.6-2002.8Visiting Research Scientist, Wayne State University Professor William L. Hase
  12. - 2002.12-2003.2Visiting Research Scientist, Wayne State University Professor William L. Hase
  13. - 2003.6-2003.7Visiting Research Scientist, Wayne State University Professor William L. Hase
  14. - 2005.2-2005.8Visiting Research Scientist, Wayne State University Professor William L. Hase
  15. - 2008.8-2009.8Visiting Research Scientist, Texas Tech University (Prof. William L. Hase) and University of Michigan (Prof. John R. Barker)

◈ Major Professional Societies

  1. - Member, American Chemical Society, 1983-present
  2. - Member, American Physical Society, 1983-present
  3. - Member, Korean Chemical Society, 1990-present

◈ Teaching

- Physical Chemistry I and II, Mathematics for Chemistry, General Chemistry, Quantum Chemistry, Statistical Mechanics, Special Topics in Physical Chemistry, Advanced Physical Chemistry, Chemical Kinetics and Dynamics

◈ Research Field

- High Performance Scientific Computing, Simulation of Molecular Motion in Biological Systems and Material Sciences, Chemical Reaction Kinetics and Dynamics, Computational Gas-Phase and Gas-Solid Reaction Dynamics, Theoretical and Computational Chemistry and Molecular Dynamics

◈ List of Publications

  • - Journal ArticlesM. Edward Grice, Kihyung Song, and Walter J. Chesnavich, “The Orbiting Transition State for Systems Containing Linear Molecules: Application to (H2O)OH? + CO2 ? HCO3? + H2O”, J. Phys. Chem., 90, 3503 (1986).
  • - Walter J. Chesnavich, L. Bass, M. Edward Grice, Kihyung Song, and Douglas A. Webb, “TSTPST: Statistical Theory Package for RRKM/TST/PST Calculations”, Quantum Chemistry Program Exchange 8, QCPE 557 (1988).
  • - Kihyung Song and Walter J. Chesnavich, “ Multiple Transition States in Chemical Reactions: Variational Transition State Theory Studies of the HO2 and HeH2+ Systems”, J. Chem. Phys., 91, 4664 (1989).
  • - Kihyung Song and Walter J. Chesnavich, “Multiple Transition States in Chemical Reactions. II. The Effect of Angular Momentum in Variational Studies of HO2 and HeH2+ Systems”, J. Chem. Phys., 93, 5751 (1990).
  • - Kihyung Song, “The Effect of Minimum Energy Path Curvature on the Dynamic Threshold for Collision-Induced Dissociation”, Bull. Korean Chem. Soc., 12, 529 (1991).
  • - Jiyoung Oh and Kihyung Song, “Evaluation of Microcanonical Variational Sum of States: Derivation and Application to the Bromobenzene Cation Dissociation Reaction”, Bull. Korean Chem. Soc., 14, 404 (1993).
  • - Chava Lifshitz, F. Louage, V. Aviyente, and Kihyung Song, "Transition State Switchings for Single Potential Well Ionic Dissociations", J. Phys. Chem., 12, 9298 (1991).
  • - Kihyung Song, Yong Nam Pak, and Yong Seung Chung, “Preliminary Study on the Acidity of Rainfall in Rural Area of Chungchungbukdo Province”, Journal of the Korean Air Reservation Sciences, 8, 38 (1992).
  • - Yong Nam Pak and Kihyung Song, “Correlations of Ions in the Rainwater of Chongwon, Chungbuk Area”, Journal of the Society of Korean Environmental Sciences, 2, 337 (1993).
  • - Sewon Roh, Yong Nam Pak, and Kihyung Song, “Quantitative Analysis of Pb and Cd in Rainwater by Coprecipitating Pre-concentration Method”, Journal of the Korean Air Reservation Sciences, 9, 265 (1993)
  • - Kihyung Song, Pascal de Sainte Claire, William L. Hase, and Kenneth C. Haas, “Comparison of Molecular Dynamics and Variational Transition-State-Theory Calculations of the Rate Constant for H-Atom Association with the Diamond [111] Surface”, Phys. Rev. B, 52, 2949 (1995).
  • - Kihyung Song, Gilles H. Peslherbe, William L. Hase, Abigail J. Dobbyn, Michael Stumpf, and Reinhard Schinke, “Comparison of Quantum and Semiclassical Variational Transition State Models for the HO2 ? H + O2 Microcanonical Rate Constant”, J. Chem. Phys., 103, 8891 (1995).
  • - Pascal de Sainte Claire, Kihyung Song, William L. Hase, and Donald W. Brenner, “Comparison of Ab Initio and Empirical Potentials for H-Atom Association with Diamond Surfaces”, J. Phys. Chem., 100, 1761 (1996).
  • - Dong Nam Shin, Yong Sim Yoo, Chul Woong Park, Jae Won Hahn, and Kihyung Song, “Kinetic Study for the Unimolecular Dissociation of the CF3H: RRKM and PST Calculations on an Ab Initio Potential Energy Surface”, Chem. Phys. Lett., 258, 613 (1996).
  • - Kihyung Song and William L. Hase, “Role of State-Specificity in the Temperature and Pressure Dependent Unimolecular Rate Constants for HO2 ? H + O2 Dissociation”, J. Phys. Chem. A, 102, 1292 (1998).
  • - Pascal de Sainte Claire, William L. Hase, and Kihyung Song, “Role of the Surface Site in the Kinetics of H-Atom Association with Diamond Surfaces”, J. Phys. Chem. B, 102, 382 (1998).
  • - Young Sook Jung, Joung Hae Lee, Kihyung Song, and Seong-Joo Kang, “The Structural Study of the Lithium ?-Diketonate Complex”, Bull. Korean Chem. Soc., 19, 484 (1998).
  • - Kim Bolton, William L. Hase, H. Bernhard Schlegel, and Kihyung Song, “A Direct Dynamics Study of the F + C2H4 ? C2H3F + H Product Translational Energy Distribution”, Chem. Phys. Lett., 288, 621 (1998).
  • - Kim Bolton, H. Bernard Schlegel, William L. Hase, and Kihyung Song, “An Ab Initio Quasi-Classical Direct Dynamics Investigation of the F + C2H4 ? C2H3F + H Product Energy Distribution”, Phys. Chem. Chem. Phys., 1, 999 (1999).
  • - Kihyung Song and William L. Hase, “Fitting Classical Microcanonical Unimolecular Rate Constants to a Modified RRK Expression: Anharmonic and Variational Effects”, J. Chem. Phys., 110, 6198 (1999).
  • - Ryan Y. Jin, Kihyung Song, and William L. Hase, “Molecular Dynamics Simulations of the Structures of Alkane/Hydroxylated ?-Al2O3(0001) Interfaces”, J. Phys. Chem. B, 104, 2692 (2000).
  • - Kihyung Song and Michael A. Collins, “A Classical Trajectory Study of Sym-Triazine Photodissociation on an interpolated potential energy surface”, Chem. Phys. Lett., 335, 481 (2001).
  • - Kihyung Song and William L. Hase, "Anharmonic Semiclassical Variational Transition-State Theory Rate Constant Model for H Atom Association with Different Sites on the Diamond 111 Surface", J. Phys. Chem. A, 105, 2453 (2001).
  • - Lipeng Sun, William L. Hase, and Kihyung Song, "Trajectory Studies of SN2 Nucleophilic Substitution. 8. Central Barrier Dynamics for Gas Phase Cl- + CH3Cl", J. Am. Chem. Soc., 123, 5753 (2001).
  • - Kihyung Song, Lipeng Sun, William L. Hase, S. Yu. Grebenshchikov and Reinhard Schinke, "Relationship Between Mode Specific and Thermal Unimolecular Rate Constants for HOCl → OH + Cl Dissociation", J. Phys. Chem. A. 106, 8339 (2002).
  • - Lipeng Sun, Kihyung Song, and William L. Hase, "A SN2 Reaction Which Avoids Its Deep Potential Energy Minimum", Science, 296, 875 (2002).
  • - Hongwei Xie, Kihyung Song, David J. Mann, and William L. Hase, "Temperature Gradients and Frictional Energy Dissipation in the Sliding of Hydroxylated α-Alumina Surfaces", Phys. Chem. Chem. Phys. 4, 5377 (2002).
  • - Lipeng Sun, Kihyung Song, William L. Hase, Marcelo Sena, and Jose M. Riveros, "Stationary Points for the OH-+CH3F→CH3OH+F- Potential Energy Surface", Int. J. Mass Spectrom., 227, 315 (2003).
  • - Kihyung Song, Oussama Meroueh, and William L. Hase, "Dynamics of High Energy Cr(CO)6+ Collisions with Hydrogenated Surfaces", J. Chem. Phys., 118, 2893 (2003)
  • - Jianbo Liu, Kihyung Song, William L. Hase, and Scott L. Anderson, “Direct Dynamics Study of Energy Transfer and Collision-Induced Dissociation: Effect of Impact Energy, Geometry, and Reactant Vibrational Mode in H2CO+ - Ne Collisions”, J. Chem. Phys., 119, 3040 (2003).
  • - William L. Hase, Kihyung Song, and Mark S. Gordon, “Direct Dynamics Simulations”, Computing in Science and Engineering, 5(4), 36 (2003).
  • - Yanfei Wang, William L. Hase, and Kihyung Song, “Direct dynamics study of N-protonated diglycine surface-induced dissociation. Influence of collision energy”, J. Am. Soc. Mass Spectrom. 14, 1402 (2003).
  • - Sanghoon Kim, Kihyung Song, Sang Ook Kang, and Jaejung Ko, “The role of borole in a fully conjugated electron-rich system”, Chem. Comm. 2004, 68.
  • - Jisook Lee, Eunjung Dong, Daesung Jin, Kihyung Song, and Michael A. Collins, “Classical Trajectory Studies of the Photodissociation Reaction of sym-Triazine”, Phys. Chem. Chem. Phys. 6, 945 (2004).
  • - Kwanyong Seo, Changwook Kim, Bongsoo Kim, Young Hee Lee, and Kihyung Song, “Growth Energetics of Single-wall Carbon Nanotubes with Carbon Monoxide”, J. Phys. Chem. A,.108, 4308 (2004).
  • - Lipeng Sun, Eunkyung Chang, Kihyung Song, and William L. Hase, “Transition State Dynamics and a QM/MM Model for the Cl- + C2H5Cl SN2 Reaction”, Can. J. Chem.82, 891 (2004).
  • - Jianbo Liu, Kihyung Song, William L. Hase, and Scott L. Anderson, “Direct Dynamics Trajectory Study of Vibrational Effects: Can Polanyi rules be Generalized to a Polyatomic System?”, J. Am. Chem. Soc.126, 8602 (2004).
  • - Jianbo Liu, Kihyung Song, William L. Hase, and Scott L. Anderson, “Direct Dynamics Trajectory Study of the Reaction of Formaldehyde Cation with D2: Vibrational and Zero-Point Energy Effects on Quasiclassical Trajectories”, J. Phys. Chem. A 109, 11376 (2005).
  • - Eun Ji Lee, Jin Seok Hong, Tae-Jeong Kim, Youngjin Kang, Eun Me Han, Jae Jung Lee, Kihyung Song, and Dong-Uk Kim, “Synthesis and Structural Characterization of Main Group 15 Organometallics R3M and R(Ph)2P(=N-Ar) (M=P, Sb, Bi; R=phenanthrenyl; Ar=2,6-iPr2-C6H3)”, Bull. Korean Chem. Soc. 26, 1946 (2005).
  • - Eunjung Dong, Donald W. Setser, William L. Hase, and Kihyung Song, “Comparison of Levels of Electronic Structure Theory in Direct Dynamics Simulations of C¬2H5F ? HF + C2H4 Product Energy Partitioning”, J. Phys. Chem. A 110, 1484 (2006).
  • - Lipeng Sun, Kyoyeon Park, Kihyung Song, Donald W. Setser, and William L. Hase, “Use of a Single Trajectory to Study Product Energy Partitioning in Unimolecular Dissociation. Mass Effects for Halogenated Alkanes”, J. Chem. Phys. 124, 064313 (2006).
  • - Grigoriy Vayner, Srirangam V. Addepalli, Kihyung Song, and William L. Hase, “Post-transition state dynamics for propene ozonolysis: Intramolecular and unimolecular dynamics of molozonide”, J. Chem. Phys., 125, 014317 (2006).
  • - Hyunbong Choi, Il Jung, Kyu Ho Song, Kihyung Song, Dong-Soo Shin, Sang Ook Kang, and Jaejung Ko, “Synthesis and photochromic reactivity of diarylethene trimers bridged by ethenyl and ethynyl unit”, Tetrahedron, 62, 9059 (2006).
  • - Sueun Cheon, Kihyung Song, and William L. Hase, “Central Barrier Recrossing Dynamics of the Cl- + CD3Cl SN2 Reaction”, J. Mol. Struct.: Theochem. 771, 27 (2006).
  • - Upakarasami Lourderaj, Kihyung Song, Theresa L. Windus, Yu Zhuang, and William L. Hase, “Direct dynamics simulations using Hessian-based predictor-corrector integration algorithms", J. Chem. Phys. 126, 044105 (2007).
  • - Hyunbong Choi, Jae Kwan Lee, Kyu Ho Song, Kihyung Song, Sang Ook Kang, and Jaejung Ko, “Synthesis of new julolidine dyes having bithiophene derivatives for solar cell”, Tetrahedron, 63, 1553 (2007).
  • - Hyunbong Choi, Jae Kwan Lee, Kihyung Song, Sang Ook Kang, and Jaejung Ko, “Novel organic dyes containing bis-dimethylfluorenyl amino benzo[b]thiophene for highly efficient dye-sensitized solar cell”, Tetrahedron, 63, 3115 (2007).
  • - Il Jung, Jae Kwan Lee, Kyu Ho Song, Kihyung Song, Sang Ook Kang, and Jaejung Ko, “Synthesis and Photovoltaic Properties of Efficient Organic Dyes Containing the Benzo[b]furan Moiety for Solar Cells”, J. Org. Chem. 72, 3652 (2007).
  • - Kyoyeon Park, Kihyung Song and William L. Hase, “An ab initio direct dynamics simulation of protonated glycine surface-induced dissociation”, Int. J. Mass Spectrom. 265, 326 (2007).
  • - Sanghoon Kim, Hyunbong Choi, Duckhyun Kim, Kihyung Song, Sang Ook Kang, and Jaejung Ko, "Novel conjugated organic dyes containing bis-dimethylfluorenyl amino phenyl thiophene for efficient solar cell", Tetrahedron, 63, 9206 (2007).
  • - Sanghoon Kim, Hyunbong Choi, Chul Baik, Kihyung Song, Sang Ook Kang, and Jaejung Ko, "Synthesis of conjugated organic dyes containing alkyl substituted thiophene for solar cell", Tetrahedron, 63, 11436 (2007).
  • - Hyunbong Choi, Chul Baik, Hyun Jun Kim, Jeum-Jong Kim, Kihyung Song, Sang Ook Kang, and Jaejung Ko, “Synthesis of Novel Organic Dyes Containing Coumarin Moiety for Solar Cell”, Bull. Korean Chem. Soc., 28, 1973 (2007).
  • - Bipasha Deb, Wenfang Hu, Kihyung Song and William L. Hase, “An analytical potential energy function to model protonated peptide soft-landing experiments. The CH3NH3+/CH4 interactions”, Phys. Chem. Chem. Phys., 10. 4565 (2008).
  • - Chulwoo Kim, Hyunbong Choi, Sanghoon Kim, Chul Baik, Kihyung Song, Moon-Sung Kang, Sang Ook Kang, and Jaejung Ko, “Molecular Engineering of Organic Sensitizers Containing p-Phenylene Vinylene Unit for Dye-Sensitized Solar Cells”, J. Org. Chem. 73, 7072 (2008). 9/19
  • - Sanghoon Kim, Duckhyun Kim, Hyunbong Choi, Moon-Sung Kang, Kihyung Song, Sang Ook Kang and Jaejung Ko, “Enhanced photovoltaic performance and long-term stability of quasi-solid-state dye-sensitized solar cells via molecular engineering”, Chem. Comm. 4951 (2008).
  • - Jeum-Jong Kim, Hyunbong Choi, Ji-Won Lee, Moon-Sung Kang, Kihyung Song, Sang Ook Kang and Jaejung Ko, “A polymer gel electrolyte to achieve ≥6% power conversion efficiency with a novel organic dye incorporating a low-band-gap chromophore”, J. Mater. Chem. 18, 5223 (2008).
  • - Duckhyun Kim, Moon-Sung Kang, Kihyung Song, Sang Ook Kang, and Jaejung Ko, “Molecular engineering of organic sensitizers containing indole moiety for dye-sensitized solar cells", Tetrahedron, 64, 10417 (2008).
  • - Books and Book ChaptersKihyung Song, “Phase Space Theory, Variational Transition State Theory, and Classical Trajectory Studies of Gas-Phase Chemical Reactions”, Ph. D. Dissertation, Texas Tech University, May 1989.
  • - Byung Soon Choi, Jae Sup Shin, Kihyung Song, and Du Hwan Oh, “Advanced Chemistry for Science High School”, Ministry of Education (1993).
  • - Woo Ki Chae, Gyu Hwan Woo, Byung Soon Choi, Jae Jung Ko, Yong Nam Pak, and Kihyung Song, “’95 Chemistry Experiment Training Material for High School Teachers”, Ministry of Education (1995).
  • - Byung Soon Choi, Kuk Tae Park, Yong Nam Pak, Kihyung Song, Soon Hee Kang, and Jong Yoon Park, “’96 Chemistry Experiment Training Material for High School Teachers”, Ministry of Education (1996).
  • - Byung Soon Choi, Soon Hee Kang, Dae Soo Kim, Hyo Nam Kim, Kuk Tae Park, Jong Yoon Park, Sung Hye Paek, Kihyung Song, Jae Sup Shin, and Du Hwan Oh, “Advanced Chemistry for High School”, Ministry of Education (1997).
  • - William L. Hase, Pascal de Sainte Claire, and Kihyung Song, “Hydrogen-Atom and Methyl-Radical Association with the Diamond (111) Surface”, in Advances in Classical Trajectory Methods, Volume 4, Molecular Dynamics of Clusters, Surfaces, Liquids, and Interfaces, JAI Press, Stanford, Connecticut, 1999.
  • - Asif Rahaman, William L. Hase, Kihyung Song, Jiangping Wang, and Samy O. Meroueh, “Chemical Dynamics Simulations of Energy Transfer and Unimolecular Decomposion in Collision-Induced Dissociation (CID) and Surface-Induced Dissociation (SID)”, in Principles of Mass Spectrometry Applied to Biomolecules, Wiley-Interscience, Hoboken, New Jersey, 2006.
  • - PresentationsKihyung Song, “Multiple Transition States in Chemical Reactions. II. The Effect of Angular Momentum in Variational Studies of HO2 and HeH2+ Systems”, 66th National Meeting of the Korean Chemical Society, Kangwon National University, Chunchon, Kangwon, Korea, October 19-20, 1999.
  • - Kihyung Song, "Analysis of Rainwater in Korean Peninsula," The first China-Korea Workshop of Environmental Studies Around the Yellow Sea Region, Beijing, China, 24-29 May, 1993.
  • - Kihyung Song, Pascal de Sainte Claire and William L. Hase, “Comparison of Classical Trajectory and Canonical Variational Transition State Theory Rate Constants for H-Atom Association with the Diamond {111} Surface”, The 10th Annual University of Waterloo Symposium on Chemical Physics, Waterloo, Ontario, Canada, November 4-6, 1994.
  • - Kihyung Song, Gilles H. Peslherbe, William L. Hase, Abigail J. Dobbyn, Michael Stumpf, and Reinhard Schinke, “Comparison of Quantum and Semiclassical Variational Transition State Models for the HO2 ? H + O2 Microcanonical Rate Constant” 1996 American Conference on Theoretical Chemistry, Park City, Utah, July 21-25, 1996.
  • - Kim Bolton, William L. Hase, H. Bernhard Schlegel, and Kihyung Song, “A Direct Dynamics Study of the F + C¬2H4 ? C2H3F + H Product Translational Energy Distribution”, 1997 Conference on the Dynamics of Molecular Collisions, Brainerd, Minnesota, July 20-25, 1997.
  • - Kihyung Song, Kim Bolton, William L. Hase, and H. Bernhard Schlegel, “A Direct Dynamics Study of the Product Translational Energy Distribution for the F + C2H4 ? C2H3F + H Reaction”, American Chemical Society National Meeting, Las Vegas, Nevada, September 7-11, 1997.
  • - Kihyung Song and William L. Hase, “Role of State-Specificity in the Temperature and Pressure Dependent Unimolecular Rate Constants for HO¬2 ? H + O2 Dissociation”, 80th National Meeting of the Korean Chemical Society, Kyemyoung University, Taegu, Korea, October 24-25, 1997.
  • - Kihyung Song and William L. Hase, “Theoretical Studies of Hydrogen Atom Association on the Diamond Surfaces”, 81th National Meeting of the Korean Chemical Society, Ehwa University, Seoul, Korea, April 24-25, 1998.
  • - Kihyung Song and William L. Hase, “Fitting Classical Microcanonical Unimolecular Rate Constants to a Modified RRK Expression: Anharmonic and Variational Effects”, 1999 Conference on Dynamics of Molecular Collisions, Lake Harmony, Pennsylvania, July 18-23, 1999.
  • - Kihyung Song, Lipeng Sun, and William L. Hase, "Trajectory Studies of SN2 Nucleophilic Substitutions. 8. Cenral Barrier Dynamics for Gas Phase Cl- + CH3Cl", 2001 Conference on the Dynamics of Molecular Collisions, Copper Mountain, Colorado, July 15-20, 2001.
  • - Lipeng Sun, Kihyung Song, and William L. Hase, "Energetics and Dynamics for the OH- + CH3F Gas Phase SN2 Reaction", 2001 Conference on the Dynamics of Molecular Collisions, Copper Mountain, Colorado, July 15-20, 2001.
  • - Kihyung Song, Lipeng Sun, and William L. Hase, "Trajectory Studies of SN2 Nucleophilic Substitutions: Central Barrier Dynamics for Gas Phase Cl- + CH3Cl", 222nd National Meeting of American Chemical Society, Chicago, Illinois, August 26-30, 2001.
  • - Kihyung Song, Lipeng Sun, and William L. Hase, “Microscopic Mechanisms of the Gas-Phase OH- + CH3F -> CH3OH + F- SN2 Reaction”, The 17th Annual Symposium on Chemical Physics, University of Waterloo, November 8-10, 2001.
  • - Kihyung Song, William L. Hase, and Reinhard Schinke, “Role of State Specificity in the Temperature- and Pressure-Dependent Unimolecular Rate Constants: HOCl ? OH + Cl Reaction”, The 17th Annual Symposium on Chemical Physics, University of Waterloo, November 8-10, 2001.
  • - Kihyung Song, Oussama Meroueh, and William L. Hase, “Dynamics of High Energy Cr(CO)6+ Collisions with Hydrogenated Surface”, Gordon Research Conference on Atomic and Molecular Interactions, Roger Williams University, July 7-12, 2002.
  • - Kwanyong Seo, Changwook Kim, Bongsoo Kim, and Kihyung Song, “Growth Energetics of Single-wall Carbon Nanotubes with Carbon Monoxide”, 92th Fall Meeting of The Korean Chemical Society, Oct. 16-17, 2003, BEXCO, Korea.
  • - Kwangyong Seo, Changwook Kim, Bongsoo Kim, Kihyung Song, and Young Hee Lee, “Growth Energetics of Single-wall Carbon Nanotubes with Carbon Monoxide”, The 2nd KAIST International Symposium on Frontier Issues in NBI Technology, KAIST, October 27, 2003, Korea.
  • - Jisook Lee, Eunjung Dong, Daesung Jin, Kihyung Song, and Michael A. Collins, “Classical Trajectory Studies of the Photodissociation Reaction of sym-Triazine”, Theory and Applications of Computational Chemistry (TACC 2004), February 15-20, 2004, Gyeongju, Korea.
  • - Eunjung Dong, Donald W. Setser, William L. Hase, and Kihyung Song, “Comparison of Levels of Electronic Structure Theory in Direct Dynamics Simulations of C2H5F ? HF + C2H4 Product Energy Partitioning”, XXth Conference on the Dynamics of Molecular Collisions, July 10-15, Pacific Grove, CA, 2005.
  • - Kyoyeon Park, Kihyung Song, and William L. Hase, “An ab initio direct dynamics simulation of protonated glycine surface-induced dissociation”, Gordon Research Conference on Gaseous Ions: Structures, Energetics & Reactions, February 25-March 2, Ventura, CA, 2007.
  • - Grant SupportKorea Research Foundation, Principal Investigator: “Multiple Transition States in Chemical Reactions”, $3,500, April 1, 1990 ? March 31, 1992.
  • - Korea Science and Engineering Foundation, Co-Investigator: “Techniques for Maintaining Air Quality”, September 1 ? August 31, $100,000, Funded.
  • - Korea National University of Education, Co-Investigator: “Development of Social Volunteering and Citizenship Education for College Students”, $35,000, March 1, 1996 ? May 31, 1997.
  • - Korea Research Institute of Standards in Science, Co-Investigator: “The Study for the Selective Extraction of Heavy Metal Ions Using β-Diketonate Ligands”, $5,000, January 1, 1998 ? December 31, 1998.
  • - Korea Research Foundation, Principal Investigator: “Theoretical and Experimental Studies of Photodissociation reactions of Sym-Triazine”, $25,000, December 1, 1999 ? November 30, 2000.
  • - Korea National University of Education, Principal Investigator: “Direct Dynamics Studies of Gas-Phase Chemical Reactions”, $1,500, June 1, 2000 ? May 31, 2001.
  • - Korea National University of Education, Principal Investigator: “Study on the Activation of Natural Science Institute, Principal Investigator”, $1,200, June 1, 2000 ? May 31, 2001.
  • - Korea Research Foundation, Principal Investigator: “Study of Chemical Reaction Dynamics Using Classical Trajectory Method”, $20,000, October 1, 2002 ? September 30, 2003.
  • - Korea National University of Education, Principal Investigator: “Chemical Reaction Dynamics Study of C2H5F Dissociation Reaction”, $3,000, April 1, 2004-March 31, 2005.
  • - Korea National University of Education, Principal Investigator, “A Study on Joint teaching of Education and Subject Through the Lecture on Development of Chemical Experiments”, $3,000, September 1-December 31, 2006.
  • - Korea National University of Education, Principal Investigator, “Direct Dynamics Studies of Chemical Reactions”, March 1-December 31, 2007.

- Physical Chemistry I and II, Mathematics for Chemistry, General Chemistry, Quantum Chemistry, Statistical Mechanics, Special Topics in Physical Chemistry, Advanced Physical Chemistry, Chemical Kinetics and Dynamics

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