4 CONCLUSIONS
The CG animation of esterification of acetic acid
and ethyl alcohol could simultaneously display
realistic shapes and electrostatic potentials of the
intermediates on the way of the reaction profile
besides the ball-and-stick model of the
intermediates. A survey of five chemistry textbooks
used in Japanese high school revealed that molecular
models were illustrated by ball-and-stick, space
filling, and free-hand, and there were only a few
examples illustrated by the models with
characteristics of molecules for chemical reaction
mechanism. The proposed CG animation could
demonstrate these realistic shapes and characteristics
of molecules. The CG teaching material can be
loaded with tablet PC, and smart phone such as iPad
and iPhone. Now we are trying to produce an
electronic laboratory textbook of the esterification in
which the CG teaching material is combined with
chemical experiments of student’s laboratory.
ACKNOWLEDGEMENTS
This work was supported by JSPS Grant-in-Aid for
Scientific Research (C) (25350188).
REFERENCES
Fukui, K., 1970. A Formulation of the Reaction
Coordinate, J. Phys. Chem., 74, 4161-4163.
Gilbert, J. K., Treagust, D. F., 2009. in Gilbert, J. K.,
Treagust, D. (eds.), “Models and Modelling in Science
Education Vol. 4 Multiple Representations in
Chemical Education”, Springer, 333-350.
Ikuo, A., Ichikawa, T., Yoshimura, A. and Teratani, S.,
1999. Computer Microscope ? Dynamics of Chemical
Reactions, Proc. Int. Conf. on Computers in
Education, 916-917.
Ikuo, A., Ichikawa, T. and Teratani, S., 2000. Chemical
Reaction Observed with Computer Microscope, J.
Chemical software, 6, 45-54 (In Japanese).
Ikuo, A., Tamura, S., Kojima, Y., Buqueron, S. S., Rahmat
S. and Teratani, S., 2002. Interactive Animation of
Chemical Reaction Based on Quantum Chemical
Calculations - Computer Microscope 2002 -, Proc. Int.
Conf. on Computers in Education, 1453-
1452(30_73.PDF).
Ikuo, A., Ikarashi, Y., Shishido, T. and Ogawa, H., 2006.
User-friendly CG visualization with animation of
chemical reaction: esterification of acetic acid and
ethyl alcohol and survey of textbooks of high school
chemistry, Journal of Science Education in Japan, 30
(4), 210-215.
Ikuo A., Nagashima H., Yoshinaga Y., and Ogawa H.,
2009. Calculation of potential energy in the. reaction
of “I + H
2
→ HI + H”, and its visualization, The
Chemical Education Journal (CEJ), Registration #13-2.
Kahn, S. D., Pau, C. F., Overman, L. E. and Hehre, W. J.,
1986. Modeling Chemical Reactivity. 1.
Regioselectivity of Diels-Alder Cycloadditions of
Electron-Rich Dienes with Electron-Deficient
Dienophiles, J. Am. Chem. Soc., 108, 7381-7396.
Kleinman, R. W., Griffin, H. C., Kerner, N. K., 1987. J.
Chem. Edu., 64, 766-770.
Loudon, G. M., 1984. Organic Chemistry, Addison-
Wesley Publishing Co., Inc., p.1010.
Nguyen, M. T., Ha, T. K., 1984. A theoretical study of the
formation of carbonic acid from the hydration of
carbon dioxide: a case of active solvent catalysis, J.
Am. Chem. Soc., 106(3), 599-602.
Stewart, J. J. P., 1989a. Optimization of parameters for
semi empirical methods I. Method, J Comp. Chem., 10
(2), 209–220.
Tasker, R., Dalton, R., 2010. in Gilbert, J. K., Reiner, M.,
Nakhleh, M. (Eds.), “Models and Modelling in
Science Education Vol. 3 Visualization: Theory and
Practice in Science Education”, Springer, 103-131.
Textbooks of “Chemistry I” and “Chemistry II” in
Japanese high school: Daiichigakusyusya, 2003 and
2004; Jikkyosyuppan, 2003 and 2004; Keirinkan, 2002
and 2003; Sanseido, 2003 and 2004; Tokyosyoseki,
2003 and 2004. (In Japanese) Textbooks were listed in
alphabetical order.
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