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1.
Zusammenfassung B-Chlorborazole reagieren mit Alkalimetallen unter Kondensation. Aus Monochlorborazolderivaten entstehen so B,B-Biborazyle, aus Dichlorborazolen B,B-Polyborazylene und aus Trichlorborazolen vernetzte Polymere von guter thermischer Beständigkeit.Mit 3 AbbildungenHerrn Prof. Dr.F. Halla zum 80. Geburtstag gewidmet.  相似文献   

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Vapor pressure as a function of temperature above solid and liquid (BrBNH)3 and the thermodynamic parameters of (BrBNH)3 sublimation and vaporization have been determined using static tensimetry with membrane null-manometer. The thermal decomposition of tribromoborazine has been studied in the saturated and unsaturated vapor regions. Irreversible decomposition occurred at noticeable rates at temperatures higher than 343 K and was accompanied by HBr evolution. In the unsaturated vapor region, thermal decomposition has far lower rates than in the saturated vapor region because of diffusion limitations. The activation energy of condensed-phase thermal decomposition of B,B′,B″-tribromoborazine is 65 ± 3 kJ/mol, and this value proves that tribromoborazine decomposition at low temperatures is not accompanied by opening of the boron-nitrogen cycle.  相似文献   

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The interconversions between isomers with the same spin multiplicity of neutral B6 and charged B6 ? and B6 + clusters have been investigated at the B3LYP/6-311+G* level of theory, including determination of the minimum energy pathways with transition states connecting the corresponding reactants and products. In dynamic calculations, 26 isomers were optimized, including 11 novel isomers. In order to further refine the energies, single-point B3LYP/6-311+G(3df) calculations were carried out on the corresponding B3LYP/6-311+G* geometries of all isomers of B6, B6 ? and B6 + and the corresponding isomerization transition states. The stability of each isomer of B6 (singlet and triplet states), B6 ? (doublet state) and B6 + (doublet state) was analyzed from both thermodynamic and dynamic viewpoints.  相似文献   

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Jost  W.  Klar  R.  Schultze  H. E.  Pfeiffer  H. H. 《Colloid and polymer science》1953,133(2-3):136-138
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