Joseph S. Thrasher
Virginia Tech
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Featured researches published by Joseph S. Thrasher.
Journal of Fluorine Chemistry | 1982
Joseph S. Thrasher; Alan F. Clifford
Abstract Reactions of SF 5 NCCl 2 with sodium methoxide and phenoxide have produced both the mono- and disubstituted derivatives SF 5 NC(Cl)OR and SF 5 NC(OR) 2 . The monosubstituted derivative SF 5 NC(Cl)N(C 2 H 5 ) 2 was the sole product produced in a 2:1 molar reaction of diethylamine with SF 5 NCCl 2 . Further reaction of this chloroimine with diethylamine gave the disubstituted derivative SF 5 NC[N(C 2 H 5 ) 2 ] 2 . Other mixed disubstituted compounds SF 5 NC(R)N(C 2 H 5 )2, where R=CH 3 , CF 3 , C 6 H 5 , and OCH 3 , were also prepared. Each of the new N-pentafluorosulfanyl derivatives was characterized by IR, 1 H, 19 F and 13 C NMR, mass spectrometry and elemental analysis where possible.
Journal of Fluorine Chemistry | 1981
Joseph S. Thrasher; Gennaro A. Iannaccone; Narayan S. Hosmane; Donald E. Maurer; Alan F. Clifford
Abstract Reactions of SF 5 NSF 2 with sodium alkoxides and aryloxides have produced both the mono- and disubstituted derivatives SF 5 NS(F)OR and SF 5 NS(OR) 2 , where RCH 3 , CH 2 CHCH 2 , C 6 H 5 , p -C 6 H 4 NO 2 , p -C 6 H 4 Br, p -C 6 H 4 CN. The reaction of SF 5 NSCl 2 with AgNCO produced SF 5 NS(NCO) 2 . This diisocyanate can also be prepared from the reaction of SF 5 NSCl 2 with KOCN in liquid SO 2 . The proposed intermediate, SF 5 NSO, in the hydrolysis of SF 5 NSF 2 was prepared from the low temperature reaction of SF 5 NSCl 2 and Ag 2 O in C 6 H 5 NO 2 . The new pentafluorosulfanyl derivatives were characterized by IR, 1 H and 19 F NMR, mass spectrometry and where possible 13 C NMR and elemental analysis.
Journal of Fluorine Chemistry | 1984
Joseph S. Thrasher; Jon L. Howell; Alan F. Clifford
Abstract The carbamyl fluoride SF5NHC(O)F reacts with both H2O and H2S to give the urea (SF5NH)2CO. Evidence supports that this reaction proceeds through a mechanism involving dehydrofluorination; whereas, the reagents PhLi and PCl5 serve only to dehydrofluorinate SF5NHC(O)F. The ring of the cyclic imide SF5 NC(O)CF 2 CF 2 C (O) can be readily opened by nucleophiles to give products such as SF5NHC(O)CF2CF2C(O)OH, SF5NHC(O)CF2CF2C(O)NH2, and SF5NHC(O)CF2CF2C(O)OCH3 Attempts to prepare analogous six- and seven-membered cyclic imides failed; however, mono- (SF5NHC(O)(CF2)3,4C(O)F) and disubstituted products (SF5NHC(O)(CF2)3,4C(O)NHSF5) were formed. The amide-acid fluorides are easily hydrolyzed by atmospheric moisture to the amide-acids SF5NHC(O)(CF2)3,4C(O)OH.
Journal of Fluorine Chemistry | 1983
Joseph S. Thrasher; Alan F. Clifford
Abstract Urethanes of the type SF 5 NHC(O)OR react with PCl 5 to give primarily SF 5 NCO. In only one case, where R = C 6 H 5 , was any evidence for an imine product observed. The corresponding reactions of SF 5 NHC(O)SR compounds give both SF 5 NCO and the imine product. The new compounds SF 5 N=C(Cl)SCH 3 and SF 5 N=C(Cl)SC 6 H 5 were identified by IR, NMR, and mass spectrometry.
Journal of Fluorine Chemistry | 1984
Joseph S. Thrasher; Jon L. Howell; Donald E. Maurer; Alan F. Clifford
Abstract The chemical shifts of the fluorine resonances of SF5NSF2 are given in fourteen different solvents. A change in solvent polarity was found to affect the axial fluorine of the SF5 group more substantially than the equatorial fluorines. This nonuniform shifting of the axial and equatorial fluorine resonances of the SF5 group is best explained as a trans effect and can sometimes be used to simplify complex spectra as shown in the examples SF5NHC(O)F and SF5NHC(O)CF3.
Journal of Fluorine Chemistry | 1982
Alan F. Clifford; Joseph S. Thrasher; Narayan S. Hosmane; Matthew Sullivan
Abstract The reaction of Pentafluorosulfanyl Isocyanate, SF5NCO, with tertiary amines has led to 1:1 adducts which have been shown to be zwitterionic in nature by infrared and NMR spectroscopy. These adducts are far less thermally stable than the analogous fluorosulfonyl derivatives recently reported by Appel and Montenarch1. The reaction of SF5NCO with triphenyl- phosphine gave some evidence for the zwitterionic derivative, but the product could not be isolated even when SF5NCO was used in excess. Recently we have also isolated from the reaction of SFE2NC(O)NCO with methanol, and from the reaction of SF5NCO with hydroquinone. Both of these novel compounds were unexpected. The physical properties of , SF2NC(O)NHC(O)OCH3, and 1,4-SF5NHC(O)OC6H4OH, prepared during this study, will be discussed in detail.
Archive | 2004
Jon L. Howell; Erik William Perez; Alfred Waterfeld; Chadron Mark Friesen; Joseph S. Thrasher
Chemische Berichte | 1984
Joseph S. Thrasher; Jon L. Howell; Alan F. Clifford
Archive | 2016
Xiaolin Liu; Andrej V. Matsnev; Steven P. Belina; Colin D. McMillen; Joseph S. Thrasher
Archive | 2016
Andrej V. Matsnev; Steven P. Belina; Si-Yan Qing; Kyle A. Berger; Anthony R. Scavuzzo; Piotr Dudzinski; Anna-Lena Dreier; Günter Haufe; Joseph S. Thrasher