37 results on '"Peng, Ai-Yun"'
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2. Copolymerization of azide-containing carbonate with lactide and post functionalization
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3. Synthesis and biological evaluation of phosphorylated flavonoids as potent and selective inhibitors of cholesterol esterase
4. Inhibition of porcine liver carboxylesterase by phosphorylated flavonoids
5. Phosphaisocoumarins as a new class of potent inhibitors for pancreatic cholesterol esterase
6. Synthesis of 4-halophosphaisocoumarins via halocyclization of 2-(1-alkynyl)phenylphosphonates
7. Inhibition of Quorum-Sensing Regulator from Pseudomonas aeruginosa Using a Flavone Derivative.
8. Efficient Synthesis of Phosphorus/Nitrogen‐Containing Chrysin Derivatives via Classic Reactions.
9. Efficient Synthesis of Phosphonamidates through One‐Pot Sequential Reactions of Phosphonites with Iodine and Amines.
10. Transcriptome analysis of three cultivars of Poria cocos reveals genes related to the biosynthesis of polysaccharides.
11. An efficient synthesis of 2-(1-(E)-alkenyl)phenylphosphonates via Suzuki reaction of aryl nonaflates with (E)-1-alkenylboronates
12. Reinvestigation of the iodine-mediated phosphoramidation reaction of amines and P(OR)3 and its synthetic applications.
13. Pd(0)/iodide salt-mediated Heck reaction of aryl nonaflates: Application to the synthesis of 2-(1-alkenyl)phenylphosphonates
14. Synthesis of phostones via DABCO-catalyzed bromocyclization of alkenylphosphonic acid monoesters.
15. A mild and efficient amide formation reaction mediated by P(OEt)3 and iodine.
16. Synthesis of Halo-Enol Phostones by Using DMAP-Catalyzed Halocyclization of Alkynylphosphonic Monoesters.
17. Synthesis of phosphaisocoumarin amidates via DIBAL-H-mediated selective amidation of phosphaisocoumarin esters.
18. Acid/base-catalyzed cyclization of O-alkynylphenylphosphonic acid monoesters and (O-hydroxyphenyl)ethynylphosphinates.
19. A convenient and applicable route to synthesize 2-(1-alkynyl)phenylphosphonates.
20. ChemInform Abstract: A Mild and Efficient Amide Formation Reaction Mediated by P(OEt)3 and Iodine.
21. ChemInform Abstract: Synthesis of Halo‐Enol Phostones by Using DMAP‐Catalyzed Halocyclization of Alkynylphosphonic Monoesters.
22. ChemInform Abstract: An Efficient Synthesis of 2-(1-(E)-Alkenyl)phenylphosphonates via Suzuki Reaction of Aryl Nonaflates with (E)-1-Alkenylboronates.
23. ChemInform Abstract: Pd(0)/Iodide Salt-Mediated Heck Reaction of Aryl Nonaflates: Application to the Synthesis of 2-(1-Alkenyl)phenylphosphonates.
24. ChemInform Abstract: Acid/Base-Catalyzed Cyclization of O-Alkynylphenylphosphonic Acid Monoesters and (O-Hydroxyphenyl)ethynylphosphinates.
25. ChemInform Abstract: An Efficient Route to 4-Halophosphaisocoumarins via CuX2-Mediated Direct Halocyclization of 2-(1-Alkynyl)phenylphosphonic Acid Diesters.
26. ChemInform Abstract: Synthesis of Phosphaisocoumarin Acids via Me3SiX-Mediated Dealkylation Reaction.
27. A Convenient and Applicable Route to Synthesize 2-(1-Alkynyl)phenylphosphonates.
28. Synthesis of 4-Halophosphaisocoumarins via Halocyclization of 2-(1-Alkynyl)phenylphosphonates.
29. Synthesis of 2-H-1,2-Oxaphosphorin 2-Oxides via Ag2CO3-Catalyzed Cyclization of (Z)-2-Alken-4-ynylphosphonic Monoesters.
30. Synthesis of Phosphaisocoumarins via Iodocyclization.
31. The Synthesis of Phosphaisocoumarins by Cu(I)-Catalyzed Intramolecular Cyclization of o-Ethynylphenylphosphonic Acid Monoesters.
32. Reinvestigation of the iodine-mediated phosphoramidation reaction of amines and P(OR) 3 and its synthetic applications.
33. A new synthesis of fully phosphorylated flavones as potent pancreatic cholesterol esterase inhibitors.
34. An efficient route to 4-halophosphaisocoumarins via CuX2-mediated direct halocyclization of 2-(1-alkynyl)phenylphosphonic acid diesters.
35. Synthesis of 2H-1,2-oxaphosphorin 2-oxides via Ag2CO3-catalyzed cyclization of (Z)-2-alken-4-ynylphosphonic monoesters.
36. Synthesis of phosphaisocoumarins via iodocyclization.
37. The synthesis of phosphaisocoumarins by Cu(I)-catalyzed intramolecular cyclization of o-ethynylphenylphosphonic acid monoesters.
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