个人简介
Postdoctoral Research Associate with Prof. B.J. Orr, UNSW, 1982-1983; Senior Tutor, School of Chemistry, UNSW 1983-1989; Principal Tutor, School of Chemistry, UNSW 1989-1992; Lecturer in Physical Chemistry, UNSW 1992-present. First Year Laboratory Coordinator 2008-present. Vice-Chancellor's award for Teaching Excellence 2011.
研究领域
Computers applications in chemical education and chemistry. Applications of computers and computer networks to chemical problems including chemical kinetics, data acquisition, and information management. Chemistry-related uses of the Internet.
近期论文
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Bogaard M.P., Haines R., Raman Intensities and Cartesian Polarizability Derivatives, Mol. Phys, 41(6), 1980, 1281-1289
Bogaard M.P., Haines R., On the Determination of the Relative Signs of Polarizability Derivatives, J. Mol. Spectrosc., 90(1), 1981, 287-296
Orr B.J., Haub J.G., Haines R., Time-Resolved Infrared-Ultraviolet Double Resonance Studies of Rotational Relaxation in D2CO, Chem. Phys. Letters, 107(2), 1984, 168-172
Duval A.B., King D.A., Haines R., Isenor N.R., Orr B.J., Fluoresence-Detected Raman-Optical Double Resonance Spectroscopy of Glyoxal Vapour, Journal of the Optical Society of America B, 2(9), 1985, 1570-1581
Duval A.B., King D.A., Haines R., Isenor N.R., Orr B.J., Coherent Raman Spectroscopy of Glyoxal Vapour, Journal of Raman Spectroscopy, 17(2), 1986, 177-182
Haines R., Teaching Computer Concepts to Undergraduate Chemists, J. Chem. Educ., 75(6), 1998, 785-787
Mori, J., Ngan, E., Haines, R., Woo, D., User-centred design meets Mac OS X: A collaborative project between Computer Science and Engineering and Chemistry. Apple University Consortium Conference, University of Adelaide, 2003.
Haines, R.S., Woo, D.T., Hudson, Benjamin T., Mori, J.C., Ngan, E.S.M., Pak, Wing-Yee., Interdisciplinary Educational Collaborations: Chemistry and Computer Science, J. Chem. Educ., 2007, 84, 967.
Haines, R.S., Wu, A.H.F., Lamb, R., Hua Zhang, Coffey, J., Huddle, T., Lafountaine, J.S., Lim, Zhi-Jun, White, E.A. and Tuong, N.T., Self-Cleaning Surfaces: A Senior Undergraduate Research Project, J. Chem. Educ. 2009, 365-367
Keaveney, S.T., Schaffarczyk McHale, K.S., Haines, R.S., Harper, J.B., Developing principles for predicting ionic liquid effects on reaction outcome. A demonstration using a simple condensation reaction, Org. Biomol. Chem., 2014, 12 (36), 7092 - 7099
Yau, H.M., Haines, R.S., Harper, J.B., A Robust, “One-Pot” Method for Acquiring Kinetic Data for Hammett Plots Used To Demonstrate Transmission of Substituent Effects in Reactions of Aromatic Ethyl Esters., J. Chem. Educ. 2014, 92 (3), 538 - 542
Keaveney, S.T., Haines, R.S., Harper, J.B., Developing principles for predicting ionic liquid effects on reaction outcome. The importance of the anion in controlling microscopic interactions, Org. Biomol. Chem., 2015, 13 (12), 3771 - 3780
Keaveney, S.T., Haines, R.S., Harper, J.B., Ionic liquid effects on a multistep process. Increased product formation due to enhancement of all steps, Org. Biomol. Chem., 2015, 13, 8925 - 8936
Keaveney, S.T., White, B.P., Haines, R.S., and Harper, J.B., The effects of an ionic liquid on unimolecular substitution processes: the importance of the extent of transition state solvation, Org. Biomol. Chem., 2016, 14, 2572-2580