104 results on '"Turnbull, W. B."'
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2. Synthesis of Product Subclass 8
3. Synthesis of Product Subclass 2
4. 4,5-Dihydroglycopyranoso[2,1-]-1,3-thiazoles
5. Glycosyl Sulfones
6. -Alkyl -Glycosyl Dithiocarbonates and -Glycosyl ,-Dialkyldithiocarbamates
7. Synthesis of Product Subclass 14
8. With Thiols and Selenols under Biphasic Conditions
9. Glycosylsulfimides
10. With Reduction of Dichalcogenides In Situ
11. From Alkyl Alcohols by the Mitsunobu Reaction
12. Formation of the S/Se/Te—Aglycone Bond by Additions to Alkenes
13. With (Alkylsulfanyl)- and (Arylsulfanyl)tributylstannanes and Trimethylsilanes
14. Formation of the Glycosyl—Sulfur Bond by Substitution of Halides
15. Substitution of Alkyl with Alkenyl Substituents
16. Oxidation of Glycosyl Disulfides
17. -Dialkyl -/-/-Glycosyl Phosphorothioates/-selenoates/-telluroates/-thioselenoates/-dithioates
18. Formation of the S—H Bond by Substitution of Metals
19. Synthesis of Product Subclass 3
20. Reduction of Dichalcogenides
21. Substitution of Sulfur in Disulfides and Thiosulfonates
22. Formation of the S/Se/Te—Aglycone Bond by Reduction of Dichalcogenides and Alkylation of the Products In Situ
23. Formation of the Acyl—Sulfur/Selenium Bond by Substitution of Carbon
24. Alkyl/Aryl Thioglycosides, Selenoglycosides, and Telluroglycosides
25. Intramolecular Substitution of Oxygen by a Thioacetamido Group
26. Formation of the Glycosyl—Sulfur/Selenium Bond by Addition of Selenocarboxylic -Acids to Glycals
27. Palladium(0)-Catalyzed Allylation
28. Acetals: Hal/X and O/O, S, Se, Te
29. Formation of the S—S Bond: Reactions between Glycosylsulfenyl Bromides and Water
30. Glycosylsulfinamides and Glycosylsulfonamides
31. Formation of the S/Se—H Bond by Substitution of Carbon
32. Synthesis of Product Subclass 6
33. Formation of the Glycosyl—S/Se/Te Bond by Addition to Glycals
34. Glycosyl Isothiouronium and Isoselenouronium Salts
35. Formation of the Glycosyl—Sulfur/Selenium Bond by Substitution of -Esters
36. Reductive Elimination of Tungsten/Molybdenum Disulfides
37. Reactions of -Glycosylphosphine Oxides Generated In Situ
38. Reactions of Glycosyl Esters or Thioesters in the Presence of Lewis Acids
39. Substitution of Halide Ion from Glycosylselenenyl Halides Generated In Situ
40. Dichalcogenide Exchange
41. -Glycosyl/Alkyl Glycosylthiosulfinates and -Glycosyl Alkane-/Arene-/Glycosylthiosulfonates
42. Formation of the Glycosyl—Sulfur Bond by Displacement of Halides
43. Reactions with Aryl Fluorides
44. Oxidation of Thioglycosides and Selenoglycosides
45. Formation of the S/Se/Te—P Bond
46. Glycosylsulfenyl Halides
47. Oxidation of Glycosylsulfenamides
48. Synthesis of Product Subclass 4
49. Glycosyl Thiols, Glycosyl Selenols, and Glycosyl Tellurols
50. Formation of the S/Se—Aglycone Bond by Substitution of Carbon
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