| Sains Malaysiana 29: 187-196  (2000)                                                                           Sains  Fizis dan Gunaan / Physical & Applied  Sciences       X-Ray Photoelectron Spectroscopy Analysis of  Nafion® 117 Electrolytic Membrane      Amir H. Khadum, Wan Ramli Wan Daud Abu Bakar Mohamad, Mohammad H. Rasheed Department of Chemical Engineering Universiti Kebangsaan Malaysia 43600 UKM Bangi, Selangor D.E., Malaysia   Ambar Yarmo School of Chemistry and Food Technology Universiti Kebangsaan Malaysia 43600 UKM Bangi, Selangor D.E., Malaysia.     ABSTRACT   A  study of elemental and chemical composition of Nafion® 117 electrolytic surface  was conducted using X-ray photoelectron spectroscopy. The major chemical  compositions of the membrane surface were mainly fluorine, carbon, oxygen,  sulphur and titanium with mass concentration percentage of 60.22, 24.54, 11.52,  2.40 and 1.32, respectively. The curve fitting for carbon spectrum indicates  three C-F namely, F2-C, F-C and F3-C chemical  environments; two types of oxygen chemical environments, O3-S and  CF-O-CF2.  In addition, one type of fluorine  environment; one type of sulphur environment, S-O3 and one type of titanium environment, Ti-O  are found on the surface of the membrane.      ABSTRACT   Kajian  mengenai komposisi unsur dan kimia permukaan membran elektrolit Nafion® 117  telah dijalankan dengan menggunakan spektroskopi fotoelektron sinar-X.  Komposisi kimia utama membran ini ialah fluorin, karbon, oksigen dan titanium  dengan peratus kepekatan masing-masing 60.22, 24.54, 11.52, 2.40 dan 1.32.  Suaian lengkung bagi spektrum karbon menunjukkan wujudnya tiga jenis sekitaran  C-F iaitu, F2-C, F-C dan F3-C, dua jenis sekitaran  oksigen iaitu  O3-S dan  CF-O-CF2.  Selain daripada itu, satu jenis  sekitaran fluorin, satu jenis sekitaran sulfur, S-O3 dan satu jenis  sekitaran titanium, Ti-O didapati pada permukaan membran ini.      RUJUKAN/REFERENCES   Gort. W. 1972. Perfluoriete  Ionenaustauscher-Membrane von hoher chemischer und thermischer Stabilitat. Chemie-.lng.  Techn. 44, 167-172.  Grubb. W.T 1959. Batteries with solid  ion Exchange Membrane. J. Electrochem. Soc., 106: 275-279.  Kratos. 1979. Hand Book of X-ray  Photoelectron Spectroscopy. 121-123.  Moulder, I.R., Stickle, W.F., Sobol  P.E. & Bomben, K.D. 1992. Hand  Book of X-ray Photoelectron Spectroscopy. Perkin-Elmer Corporation, Eden  Prairie, Minnesota 55344, USA.  Orchard A. F., 1977. Hand Book of X-ray  and Ultraviolet Photoelectron Spectroscopy, ed. D. Briggs Heyden, London.  Otoka E.P., Hellman M.Y., & Blyer, L. L. 1969. Terminal-Group  Association in Carboxyl and Carboxylate-terminal polybutane. J. Apl. Phys.  40: 4221-4225.  Scibona G., Fabiani, C & Scuppa, B 1983. Electrochemical  behavior of nafion type membranes. J. Membrane Science. 16: 37-42.  Wanger C.D., Riggs, W. M., Davis, L.E.,  Moulder, I. F. & Muilenberg, G.  E., 1979. Hand Book of X-ray Photoelectron Spectroscopy. Eden prairie,  Minnesota.  Yeo R.S & Yeager, H. L. 1985. Structural and transport properties of  perfluorinated Ion-exchange membranes. Modern Aspects of Electrochemistry.      White B.E. & Bockris  J.M., eds. New York: Platinum Press  158-164.     |