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Devasahayam, S., Hill, D. J. T. and Connell, J. W. (2001) A comparative study of the radiation resistance of four optically transparent polyimides. Radiation Physics And Chemistry, 62 1: 189-194. doi:10.1016/S0969-806X(01)00437-6 68   8 Cited 8 times in Scopus8 0
Devasahayam, S., Hill, D. J. T. and Whittaker, A. K. (2003) G-values for scission and crosslinking on γ-radiolysis of Ultem at 303 K. High Performance Polymers, 15 3: 259-267. doi:10.1177/0954008303015003003 66   4 Cited 2 times in Scopus2 0
Devasahayam, S. (2000). High-energy radiation chemistry of polyimides PhD Thesis, Department of Chemistry, The University of Queensland. 116  
Devasahayam, S., Hill, D. T., Pomery, P. and Whittaker, A. K. (1999). High energy radiation chemistry of polyimides. In: Preprints of 6th Pacific Polymer Conference. 6th Pacific Polymer Conference, Guangzhou, China, (42). 7 - 11 December 1999. 47  
Hill, D., Alexander, M.A., Devasahayam, S. and Connell, J. W. (2000). High energy radiation of some polyimides. In: 2000 International Chemical Congress of Pacific Basin Societies. Pacfichem 2000, Honolulu, (869-(Abstract)). 14-19 Dec, 2000. 28  
Devasahayam, S., Brereton, I. M., Whittaker, A. K. and Hill, D. (2000). Identifying the crosslink structures formed in Y-irradiated Ultem using NMR. In: Radiation 2000 Conference Handbook. Radiation 2000, AINSE, Lucas Hts, NSW, (49). 26-28 Nov, 2000. 53  
Devasahayam, S., Brereton, I. M., Whittaker, A. K. and Hill, D. (2001). Radiation chemistry of Ultem by NMR. In: 24th Australiasian Polymer Symposium. 24th Australiasian Polymer Symposium, Beechworth, Victoria, (PB9-PB9). 4-8 February, 2001. 70  
Devasahayam, S., Hill, D., Pomery, P. and Whittaker, A. K. (2000). The power of thermal annealing of Y-irradiated Ultem in dislcosing its radiation chemistry using ESR. In: Radiation 2000 Conference Handbook. Radiation 2000, AINSE, Lucas Hts, NSW, (19). 26-28 Nov, 2000. 54  
Devasahayam, S., Hill, D. J. T., Pomery, P. J. and Whittaker, A. K. (2002) The radiation chemistry of ultem at 77 K as revealed by ESR spectroscopy. Radiation Physics And Chemistry, 64 4: 299-308. doi:10.1016/S0969-806X(01)00498-4 85   8 Cited 6 times in Scopus6 0