Features of Joint Thermolysis of Organometallic Compounds of Group III and V Elements |
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Authors: | Yablokov V. A. Mitrofanova S. V. Yablokova N. V. |
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Affiliation: | (1) Nizhni Novgorod State Architectural and Building University, Nizhni Novgorod, Russia |
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Abstract: | The kinetic data on thermolysis of equimolar gaseous mixtures of organometallic compounds of Group III and V elements show that the thermal stability of the mixture differs from that of the components taken separately, which is mainly due to complexation between the mixture components. The complex is a kinetically active species. The rate of joint thermolysis of the organometallic compounds grows as the number of hydride atoms at the Group V element increases in the order AsMe3 < t-BuPH2 < AsH3. The stability of the complexes formed by organometallic compounds of Group III and V elements decreases in the same order. Joint thermolysis of Me3Ga and AsH3 yields a solid oligomer Me2GaAs(H)Ga(Me)AsH2. The complicated pattern of decomposition of a mixture of trimethylaluminum with various electron donors is due to participation in the pyrolysis of two trimethylaluminum species: monomeric and dimeric. In decomposition of pure trimethylaluminum or its mixtures with organometallic compounds of Group V elements or with ether, solid pyrolysis products deposited on the vessel walls catalyzed further transformations of the mixture components. |
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