Academic literature on the topic 'Azidosilane'

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Journal articles on the topic "Azidosilane"

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Maurer, F. H. J., and M. Welander. "Positron annihilation in polyethylene and azidosilane-modified glass/polyethylene composites." Journal of Adhesion Science and Technology 5, no. 6 (1991): 425–37. http://dx.doi.org/10.1163/156856191x00576.

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Mphahlele, Malose J. "REACTION OF RING AND SIDE CHAIN SUBSTITUTED 3-PHOSPHONOMETHYLCYCLOHEXENONES WITH AZIDOSILANE REAGENTS." Phosphorus, Sulfur, and Silicon and the Related Elements 118, no. 1 (1996): 145–54. http://dx.doi.org/10.1080/10426509608038808.

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Miller, James D., Hatsuo Ishida, and Frans H. J. Maurer. "Controlling and monitoring interfacial reactions in composites of azidosilane modified glass filled polyethylene." Polymer Composites 9, no. 1 (1988): 12–19. http://dx.doi.org/10.1002/pc.750090103.

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Zigler, Steven S., Leighta M. Johnson, and Robert West. "Generation of silanimines by photolysis of hindered azidosilanes." Journal of Organometallic Chemistry 341, no. 1-3 (1988): 187–98. http://dx.doi.org/10.1016/0022-328x(88)89074-0.

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"Applications of azidosilane coupling agents in reinforced thermoplastic composites." Composites 18, no. 5 (1987): 416. http://dx.doi.org/10.1016/0010-4361(87)90383-1.

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Kolosick, Paul C., C. T. Scott, J. A. Koutsky, and G. E. Myers. "Effects of Azidosilane Treatments of Wood and Cellulose Fiber Surfaces on Adhesion to Polypropylene." MRS Proceedings 197 (1990). http://dx.doi.org/10.1557/proc-197-119.

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ABSTRACTWood strip surfaces (Aspen and Birch) and cellulose fibers (Birch, pulped paper fibers) were treated with azidosilane coupling agent, via immersion in methylene chloride and methanol solutions respectively, and then subsequently dried. Polypropylene films were compression molded to the wood surfaces and peel forces were measured. The treated cellulose fibers were suspended and mixed with polypropylene fibers in water, formed into thin sheets by wet forming, dried, and compression molded to melt the polypropylene.Treated wood surfaces gave two to six times the dry peel force versus untr
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Roberts, David A., Arthur K. Hochberg, David L. O'Meara, Felicia Rusnak, and Herman Hockenhull. "The LPCVD of Silicon Nitride Films from Alkylazidosilanes." MRS Proceedings 204 (1990). http://dx.doi.org/10.1557/proc-204-515.

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ABSTRACTThe series of azidosilanes, SiEtn(N3)4-n where n = 1,2,3 and Si(t-butyl)(N3)3 were evaluated for the LPCVD of silicon nitride thin films. Both SiEt(N3)3 and Si(t-butyl)(N3)3 gave deposition rates of approximately 100 Å/min at temperatures of 450–500°C but films appear to be porous and air sensitive. Film properties improved as deposition temperatures were increased to 600°C. The polyazides must be handled with extreme caution. An unexplained detonation of one sample of SiEt(N3)3 occurred during the course of this study.
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ZIGLER, S. S., L. M. JOHNSON, and R. WEST. "ChemInform Abstract: Generation of Silanimines by Photolysis of Hindered Azidosilanes." ChemInform 19, no. 29 (1988). http://dx.doi.org/10.1002/chin.198829252.

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Dissertations / Theses on the topic "Azidosilane"

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Glatthaar, Jörg [Verfasser]. "Die Synthese, Matrixisolation und Photochemie hochempfindlicher Azidosilane / vorgelegt von Jörg Glatthaar." 2003. http://d-nb.info/969834632/34.

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Zigler, Steven S. "Photochemical and structural studies of azidosilanes [and] formation of silanediimines and silanimines /." 1987. http://catalog.hathitrust.org/api/volumes/oclc/15993407.html.

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