Redukce pomocí hydrosilanů (Czech Wikipedia)

Analysis of information sources in references of the Wikipedia article "Redukce pomocí hydrosilanů" in Czech language version.

refsWebsite
Global rank Czech rank
2nd place
4th place
4th place
8th place

doi.org

  • Gerald L. Larson; James L. Fry. Ionic and Organometallic-Catalyzed Organosilane Reductions. Organic Reactions. 2008. ISBN 978-0471264187. doi:10.1002/0471264180.or071.01. 
  • George A. Kraus; Maria Teresa Molina; John A. Walling. Reduction of cyclic hemiacetals. The synthesis of demethoxyeleutherin and nanaomycin A. Journal of the Chemical Society, Chemical Communications. 1986, s. 1568. doi:10.1039/C39860001568. 
  • Vladimir Gevorgyan; Michael Rubin; Sharonda Benson; Jian-Xiu Liu; Yoshinori Yamamoto. A Novel B(C6F5)3-Catalyzed Reduction of Alcohols and Cleavage of Aryl and Alkyl Ethers with Hydrosilanes. The Journal of Organic Chemistry. 2000, s. 6179–6186. doi:10.1021/jo000726d. PMID 10987957. 
  • Merwyn G. Adlington; Michael Orfanopoulos; James L. Fry. A convenient one-step synthesis of hydrocarbons from alcohols through use of the organosilane-boron trifluoride reducing system. Tetrahedron Letters. 1976, s. 2955–2958. doi:10.1016/S0040-4039(01)85498-8. 
  • Michael P. Doyle; Charles C. McOsker. Silane reductions in acidic media. 10. Ionic hydrogenation of cycloalkenes. Stereoselectivity and mechanism. The Journal of Organic Chemistry. 1978, s. 693–696. doi:10.1021/jo00398a039. 
  • Francis A. Carey; Henry S. Tremper. Carbonium ion-silane hydride transfer reactions. II. 2-Phenyl-2-norbornyl cation. The Journal of Organic Chemistry. 1969, s. 4–6. doi:10.1021/jo00838a002. 
  • David J. Wustrow; William J. Smith; Lawrence D. Wise. Selective deoxygenation of allylic alcohols and acetates by lithium perchlorate promoted triethylsilane reduction. Tetrahedron Letters. 1994, s. 61–64. doi:10.1016/0040-4039(94)88162-6. 
  • L. R. C. Barclay; H. R. Sonawane; M. C. MacDonald. Sterically Hindered Aromatic Compounds. III. Acid-catalyzed Reactions of 2,4,6-Tri- t -butyl- and 2-Methyl-4,6-di-t-butylbenzyl Alcohols and Chlorides. Canadian Journal of Chemistry. 1972-01-15, s. 281–290. doi:10.1139/v72-041. 
  • Ilan Pri-Bar; Ouri Buchman. Homogeneous, palladium-catalyzed, selective hydrogenolysis of organohalides. The Journal of Organic Chemistry. 1986, s. 734–736. doi:10.1021/jo00355a029. 
  • Makoto Fujita; Tamejiro Hiyama. Fluoride ion-catalyzed reduction of aldehydes and ketones with hydrosilanes. Synthetic and mechanistic aspects and an application to the threo-directed reduction of .alpha.-substituted alkanones. The Journal of Organic Chemistry. 1988, s. 5405–5415. doi:10.1021/jo00258a003. 
  • Gerald L. Larson; Richard J. Liberatore. Organosilanes in Metal-Catalyzed, Enantioselective Reductions. Organic Process Research & Development. 2021-07-26. doi:10.1021/acs.oprd.1c00073. 
  • Bruce H. Lipshutz; Kevin Noson; Will Chrisman; Asher Lower. Asymmetric Hydrosilylation of Aryl Ketones Catalyzed by Copper Hydride Complexed by Nonracemic Biphenyl Bis - phosphine Ligands. Journal of the American Chemical Society. 2003, s. 8779–8789. doi:10.1021/ja021391f. PMID 12862472. 
  • Hisao Nishiyama; Soon-Bong Park; Kenji Itoh. Stereoselectivity in hydrosilylative reduction of substituted cyclohexanone derivatives with chiral rhodium-bis(oxazolinyl)pyridine catalyst. Tetrahedron: Asymmetry. 1992, s. 1029–1034. doi:10.1016/S0957-4166(00)86036-X. 
  • R. J. P. Corriu; R. Perz; C. Reye. Activation of silicon-hydrogen, silicon-oxygen, silicon-nitrogen bonds in heterogeneous phase. Tetrahedron. 1983, s. 999–1009. doi:10.1016/S0040-4020(01)88599-9. 
  • D. N. Kursanov; Z. N. Parnes; G. I. Bolestova. Ionic hydrogenation of anthracene and dihydroanthragene with a hydride ion donor. Bulletin of the Academy of Sciences of the USSR Division of Chemical Science. 1968, s. 1107. doi:10.1007/BF00910867. 
  • Seiichi Takano; Minoru Moriya; Kunio Ogasawara. A concise stereocontrolled total synthesis of (+)-estrone. Tetrahedron Letters. 1992, s. 1909–1910. doi:10.1016/S0040-4039(00)74175-X. 
  • Muriel Federspiel, Rolf Fischer, Michael Hennig, Hans-Jürgen Mair, Thomas Oberhauser, Gösta Rimmler, Thomas Albiez, Jürg Bruhin, Heinrich Estermann, Carsten Gandert, Volker Göckel, Stephan Götzö, Ursula Hoffmann, Gabriel Huber, Günter Janatsch, Stephan Lauper, Odette Röckel-Stäbler, Rene Trussardi, Andreas G. Zwahlen. Industrial Synthesis of the Key Precursor in the Synthesis of the Anti-Influenza Drug Oseltamivir Phosphate (Ro 64-0796/002, GS-4104-02): Ethyl (3 R ,4 S ,5 S )-4,5-epoxy-3-(1-ethyl-propoxy)-cyclohex-1-ene-1-carboxylate. Organic Process Research & Development. 1999, s. 266–274. doi:10.1021/op9900176. 
  • Kumaravel Selvakumar; John F. Harrod. Titanocene-Catalyzed Coupling of Amides in the Presence of Organosilanes To Form Vicinal Diamines. Angewandte Chemie International Edition. 2001, s. 2129–2131. doi:10.1002/1521-3773(20010601)40:11<2129::AID-ANIE2129>3.0.CO;2-2. 
  • Iwao Ojima; Miyoko Kumagai; Yoichiro Nagai. Hydrosilylation of α,β-unsaturated nitriles and esters catalyzed by tris (triphenylphosphine)chlororhodium. Journal of Organometallic Chemistry. 1976, s. 43–60. doi:10.1016/S0022-328X(00)87057-6. 
  • U. Rosentreter. Stereoselective Synthesis of all- trans -Isomers of 1,2,3,4-Tetrahydropyridines and Piperidines from Hantzsch-Type 1,4-Dihydropyridines. Synthesis. 1985, s. 210–212. doi:10.1055/s-1985-31160. 
  • N. M. Loim. Ionic hydrogenation of the C=N linkage in azomethynes. Bulletin of the Academy of Sciences of the USSR Division of Chemical Science. 1968, s. 1345. doi:10.1007/BF01106312. 
  • S. Chandrasekhar; Chandraiah; Ch. Raji Reddy; M. Venkat Reddy. Direct Conversion of Azides and Benzyl Carbamates to t- Butyl Carbamates Using Polymethylhydrosiloxane and Pd-C. Chemistry Letters. 2000, s. 780–781. doi:10.1246/cl.2000.780. 

nih.gov

ncbi.nlm.nih.gov