30 results on '"Cai, Haiting"'
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2. Catalytic consequences of the identity and coverages of reactive intermediates during benzene hydrogenation on Pt, Pd, and Pt-Re catalysts
3. Reaction-driven protonation of pyridine nitrogen as active sites for efficient acetylene hydrochlorination
4. Thermal radiative catalysis: Selective dehydrogenation of ethane to ethylene by vibrationally excited carbon dioxide
5. Mechanistic insight into acetylene hydrochlorination with Ru-ligands via dual activation promoted by metal-ligands cooperative catalysis
6. Silica samurai: Aristocrat of energy and environmental catalysis
7. Non-metallic carbon-based catalysts for acetylene hydrochlorination: The effect of graphitization degree of carbonaceous material
8. Bullying Experiences and Nonsuicidal Self-injury among Chinese Adolescents: A Longitudinal Moderated Mediation Model
9. Photothermal Catalysis: An Emerging Green Approach to Upcycling Plastic Waste
10. High surface area siloxene for photothermal and electrochemical catalysis
11. Mechanistic Insight into Acetylene Hydrochlorination with Ru-Ligands Via Dual Activation Promoted by Metal-Ligands Cooperative Catalysis
12. Anti-leaching Pd catalyst with covalent coordination via p-band engineering for efficient acetylene hydrochlorination
13. Mechanistic Similarities and Differences for Hydrogenation of Aromatic Heterocycles and Aliphatic Carbonyls on Sulfided Ru Nanoparticles
14. Catalytic Effects of Chemisorbed Sulfur on Pyridine and Cyclohexene Hydrogenation on Pd and Pt Clusters
15. Mechanistic Role of the Proton–Hydride Pair in Heteroarene Catalytic Hydrogenation
16. Research and implementation of ARM-based fieldbus protocol conversion method
17. Palladium-Catalyzed Group-Directed sp2-C—H Functionalization
18. Palladium-Catalyzed Decarboxylativeortho-Acylation ofO-Methyl Ketoximes via Direct sp2C—H Bond Activation
19. Palladium‐Catalyzed Synthesis of Aromatic Sultones via Sulfonic Acid Group‐Directed CH Activation
20. ChemInform Abstract: Palladium‐Catalyzed Haloallylation of Aromatic Ynol Ethers with Allyl Chlorides: A Highly Regio‐ and Stereoselective Approach to (1E)‐α‐Chloroenol Ethers.
21. ChemInform Abstract: Palladium-Catalyzed Dienylation of Haloalkynes Using 2,3-Butadienyl Acetates: A Facile Access to (1Z)-1,2-Dihalo-3-vinyl-1,3-dienes.
22. ChemInform Abstract: Synthesis of cis‐1,2‐Dihaloalkenes Featuring Palladium‐Catalyzed Coupling of Haloalkynes and α,β‐Unsaturated Carbonyls.
23. Palladium-Catalyzed Dienylation of Haloalkynes using 2,3-Butadienyl Acetates: A Facile Access to (1Z)-1,2-Dihalo- 3-vinyl-1,3-dienes
24. ChemInform Abstract: Palladium-Catalyzed Highly Regio- and Stereoselective Synthesis of (1E)- or (1Z)-1,2-Dihalo-1,4-dienes via Haloallylation of Alkynyl Halides.
25. Synthesis of cis-1,2-Dihaloalkenes Featuring Palladium-Catalyzed Coupling of Haloalkynes and α,β-Unsaturated Carbonyls
26. Palladium-catalyzed highly regio- and stereoselective synthesis of (1E)- or (1Z)-1,2-dihalo-1,4-dienes via haloallylation of alkynyl halides
27. Palladium-catalyzed haloallylation of aromatic ynol ethers with allyl chlorides: a highly regio- and stereoselective approach to (1E)-α-chloroenol ethers
28. Palladium-Catalyzed Dienylation of Haloalkynes using 2,3-Butadienyl Acetates: A Facile Access to (1 Z)-1,2-Dihalo- 3-vinyl-1,3-dienes.
29. Palladium-catalyzed highly regio- and stereoselective synthesis of (1E)- or (1Z)-1,2-dihalo-1,4-dienes viahaloallylation of alkynyl halidesElectronic supplementary information (ESI) available: Experimental details and characterization of new compounds. See DOI: 10.1039/c0cc04879h
30. High surface area siloxene for photothermal and electrochemical catalysis.
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