Dissociative photoionization of Al2(Ch3)6 and Al2(Ch3)3Cl3 in the range 40–100 eV |
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Authors: | Shin-Ichi Nagaoka Inosuke Koyano Takashi Imamura Toshio Masuoka |
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Abstract: | ![]() Dissociation processes of the organoaluminum compounds Al2(CH3)6 and Al2(CH3)3Cl3 have been studied in the range of valence and Al:2p core-level ionization by means of photoelectron–photoion and photoion–photoion coincidence techniques. The double-ionization threshold and the Al:2p core-ionization threshold of Al2(CH3)6 are estimated to be about 30 and 80 eV 1 1 eV = 96.4853 kJ mol?1. respectively. The relative yields of the H+?Al+ and H+?CHm,+ (m′ = 0–3) ion pairs are enhanced around the Al:2p core-ionization threshold of Al2(CH3)6. The photoion–photoion coincidence intensities of Al2(CH3)3Cl3 are negligibly small throughout the energy range studied. The ratio of the relative yield of AlC2H6+ to that of Al+ increases smoothly through the Al:2p core-ionization and/or excitation region of Al2(CH3)3Cl3. The variation of the fragmentation pattern with photon energy is discussed in conjunction with the relevant electronic states. |
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Keywords: | Organoaluminum photoionization synchrotron radiation |
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