49 results on '"Chai, Guobi"'
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2. Color characteristics and pyrolysis volatile properties of main colored fractions from the Maillard reaction models of glucose with three amino acids
3. Quinoline Bridging Hyperconjugated Covalent Organic Framework as Solid-Phase Microextraction Coating for Ultrasensitive Determination of Phthalate Esters in Water Samples
4. A practical synthesis of three aliphatic metabolites of capsaicin: 16-Hydroxycapsaicin, 17-hydroxycapsaicin, and 16,17-dehydrocapsaicin
5. Brain distribution and metabolic profiling of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone in rats investigated by UHPLC-HRMS/MS following peripheral administration
6. A strategy to maintain the organoleptic quality of flavor-β-cyclodextrin inclusion complexes: Characteristics aroma reconstruction of Osmanthus absolute
7. A flexible electrochemical glucose sensing platform based on an electrospun PVA mat covered with in situ grown silver nanoparticles and a mixed self-assembled monolayer of glucose oxidase and ferrocene
8. Photoredox Catalytic Cascade Radical Addition to Construct 1,4- Diketone-Functionalized Quinoxalin-2(1H)-one Derivatives
9. Solubilization and release of fragrance agents in the aqueous solution ofCO 2switchable surfactants
10. Organocatalytic Enantioselective and Diastereodivergent Mannich Reactions of 5‐Substituted Oxazolidin‐2,4‐Diones
11. Palladium/Sensory Component-Catalyzed Homocoupling Reactions of Aryl Halides
12. Palladium/Sensory Component-Catalyzed Homocoupling Reactions of Aryl Halides
13. Photoredox-Catalyzed Enantioselective α-Deuteration of Azaarenes with D2O
14. Direct Analysis of Carbonyl Compounds by Mass Spectrometry with Double-Region Atmospheric Pressure Chemical Ionization
15. Nicotine Pharmacokinetics in Rat Brain and Blood by Simultaneous Microdialysis, Stable-Isotope Labeling, and UHPLC–HRMS: Determination of Nicotine Metabolites
16. Non-contact light-radiation thermal desorption-assisted LTP ionization miniature ion trap mass spectrometry for rapid analysis of the flavouring substances in pipe tobacco
17. Organocatalytic Enantioselective Addition of α-Aminoalkyl Radicals to Isoquinolines
18. Organocatalytic Asymmetric Cascade Aerobic Oxidation and Semipinacol Rearrangement Reaction: A Visible Light-Induced Approach to Access Chiral 2,2-Disubstituted Indolin-3-ones
19. Cover Picture: Sequential Photoredox Catalysis for Cascade Aerobic Decarboxylative Povarov and Oxidative Dehydrogenation Reactions of N -Aryl α-Amino Acids (Adv. Synth. Catal. 9/2018)
20. Sequential Photoredox Catalysis for Cascade Aerobic Decarboxylative Povarov and Oxidative Dehydrogenation Reactions of N -Aryl α-Amino Acids
21. ChemInform Abstract: A Practical Solution to Stereodefined Tetrasubstituted Olefins.
22. A Practical Solution to Stereodefined Tetrasubstituted Olefins
23. Synthesis and Olfactory Properties of Silicon‐Containing Analogs of Rosamusk, Romandolide, and Applelide: Insights into the Structural Parameters of Linear Alicyclic Musks
24. ChemInform Abstract: Iron-Catalyzed Diastereoselective Synthesis of α-(Methoxycarbonyl)allylsilanes.
25. ChemInform Abstract: Iron‐Catalyzed Unexpected Easy Access to Stereodefined Trimethylsilyl Vinyl Ketenes.
26. Iron‐Catalyzed Diastereoselective Synthesis of α‐(Methoxycarbonyl)allylsilanes
27. ChemInform Abstract: Electronic Effect Directed Au(I)-Catalyzed Cyclic C2-H Bond Functionalization of 3-Allenylindoles.
28. Iron-Catalyzed Unexpected Easy Access to Stereodefined Trimethylsilyl Vinyl Ketenes
29. ChemInform Abstract: CuCl-Catalyzed Stereoselective Conjugate Addition of Grignard Reagents to 2,3-Allenoates.
30. Electronic Effect Directed Au(I)-Catalyzed Cyclic C2–H Bond Functionalization of 3-Allenylindoles
31. CuCl-catalyzed stereoselective conjugate addition of Grignard reagents to 2,3-allenoates
32. ChemInform Abstract: Efficient Assembly of Chromone Skeleton from 2,3‐Allenoic Acids and Benzynes.
33. Efficient Assembly of Chromone Skeleton from 2,3-Allenoic Acids and Benzynes
34. ChemInform Abstract: A Straightforward Synthesis of Cyclobutenones via a Tandem Michael Addition/Cyclization Reaction of 2,3-Allenoates with Organozincs.
35. A Straightforward Synthesis of Cyclobutenones via a Tandem Michael Addition/Cyclization Reaction of 2,3-Allenoates with Organozincs
36. ChemInform Abstract: Tandem Reaction of 4‐Aryl‐2,3‐allenoates with Organozinc Reagents: A Facile Route to Polysubstituted Naphthols.
37. ChemInform Abstract: Ferric Chloride Hexahydrate‐Catalyzed Highly Regio‐ and Stereoselective Conjugate Addition Reaction of 2,3‐Allenoates with Grignard Reagents: An Efficient Synthesis of β,γ‐Alkenoates.
38. Studies on the Tandem Reaction of 4‐Aryl‐2,3‐allenoates with Organozinc Reagents: A Facile Route to Polysubstituted Naphthols
39. Ferric Chloride Hexahydrate‐Catalyzed Highly Regio‐ and Stereoselective Conjugate Addition Reaction of 2,3‐Allenoates with Grignard Reagents: An Efficient Synthesis of β,γ‐Alkenoates
40. ChemInform Abstract: An Efficient Double 1,2‐Addition Reaction of 2,3‐Allenoates with Allyl Magnesium Chloride.
41. ChemInform Abstract: Highly Regio- and Stereoselective Double Michael Addition-Cyclization of 2,3-Allenoates with Organozinc Compounds: Efficient Synthesis of 5-Benzylidenecyclohex-2-enones.
42. An Efficient Double 1,2-Addition Reaction of 2,3-Allenoates with Allyl Magnesium Chloride
43. ChemInform Abstract: Electrophilic Interaction of 2,3-Allenols with Electrophilic Halogen Reagents: Selective Synthesis of 2,5-Dihydrofurans, 3-Halo-3-alkenals, or 2-Halo-2-alkenyl Ketones.
44. Highly Regio- and Stereoselective Double Michael Addition-Cyclization of 2,3-Allenoates with Organozinc Compounds: Efficient Synthesis of 5-Benzylidenecyclohex-2-enones
45. Highly Regio‐ and Stereoselective Double Michael Addition–Cyclization of 2,3‐Allenoates with Organozinc Compounds: Efficient Synthesis of 5‐Benzylidenecyclohex‐2‐enones
46. Controllable Highly Stereoselective Reaction of in situ Generated Magnesium Dienolate Intermediates with Different Electrophiles
47. Studies on Electrophilic Interaction of 2,3‐Allenols with Electrophilic Halogen Reagents: Selective Synthesis of 2,5‐Dihydrofurans, 3‐Halo‐3‐alkenals, or 2‐Halo‐2‐alkenyl Ketones
48. ChemInform Abstract: Iron‐Catalyzed Highly Regio‐ and Stereoselective Conjugate Addition of 2,3‐Allenoates with Grignard Reagents.
49. Iron-Catalyzed Highly Regio- and Stereoselective Conjugate Addition of 2,3-Allenoates with Grignard Reagents
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