By Roy G.D. (ed.)
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Extra info for Advances in Chemical Propulsion
Control of thermoacoustic instabilities in ramjets and gas turbine combustors: An overview. 6th International Congress on Sound and Vibration Proceedings. Copenhagen, Denmark. 6. Strykowski, P. , A. Krothapalli, and S. Jendoubi. 1996. The eﬀect of counterﬂow on the development of compressible shear layers. J. Fluid Mechanics 308:63–96. 7. Gutmark, E. , K. S. Schadow, and K. H. Yu. 1997. Mixing enhancement in supersonic free shear ﬂows. Annual Reviews Fluid Mechanics 27:375–417. 8. Baer, D. , M.
The usual and most commonly used method is of Barton’s, which involves the radical decomposition of thiohydroxamic esters in the presence of appropriate halogen donor substituent such as 2,2,2-triﬂuoroiodoethane. Even though this method is generally used, the 2,2,2-triﬂuoroiodoethane is quite expensive and it involves the initial preparation of cubane carbonyl chloride which is very sensitive to friction and therefore it is not encouraged in the case of cubanes. Synthesis of bridgehead iodides has also been accomplished by tertbutyl hypoiodite meditated iodinative decarboxylation or by treating anhydrous silver carboxylates with bromine or iodine (Hundsdiecker–Borodin reaction).
Moriarty, R. , and M. S. Rao. 1994. Energetic azide compounds. 7th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and P. Givi. Buﬀalo, NY: State University of New York at Buﬀalo. 75–81. 3. Moriarty, R. , L. A. Enache, D. Pavlovic, and M. S. Rao. 1995. Synthesis of highenergy compounds. 8th ONR Propulsion Meeting Proceedings. Eds. G. D. Roy and F. A. Williams. La Jolla, CA: University of California at San Diego. 122–29. 4. Moriarty, R. , L. A. Enache, D. Pavlovic, D. Huang, and M. S. Rao. 1996.