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药物合成数据库
药物合成数据库

Advances in the Synthesis of Phosphorothioate and Phosphinothioate
Advances in the Synthesis of Phosphorothioate and Phosphinothioate

Pd(OH)2/C (Pearlman's Catalyst): A Highly Active Catalyst for Fukuyama,  Sonogashira, and Suzuki Coupling Reactions | The Journal of Organic  Chemistry
Pd(OH)2/C (Pearlman's Catalyst): A Highly Active Catalyst for Fukuyama, Sonogashira, and Suzuki Coupling Reactions | The Journal of Organic Chemistry

Couplage de Fukuyama — Wikipédia
Couplage de Fukuyama — Wikipédia

Catalysts | Free Full-Text | Epoxide Syntheses and Ring-Opening Reactions  in Drug Development
Catalysts | Free Full-Text | Epoxide Syntheses and Ring-Opening Reactions in Drug Development

Mitsunobu Reactions Catalytic in Phosphine and a Fully Catalytic System -  Buonomo - 2015 - Angewandte Chemie International Edition - Wiley Online  Library
Mitsunobu Reactions Catalytic in Phosphine and a Fully Catalytic System - Buonomo - 2015 - Angewandte Chemie International Edition - Wiley Online Library

A flexible approach to Pd-catalyzed carbonylations via aroyl  dimethylaminopyridinium salts - Chemical Science (RSC Publishing)  DOI:10.1039/C5SC02949J
A flexible approach to Pd-catalyzed carbonylations via aroyl dimethylaminopyridinium salts - Chemical Science (RSC Publishing) DOI:10.1039/C5SC02949J

Organic Syntheses Procedure
Organic Syntheses Procedure

Direct Arylation Reactions Catalyzed by Pd(OH)2/C: Evidence for a Soluble  Palladium Catalyst | The Journal of Organic Chemistry
Direct Arylation Reactions Catalyzed by Pd(OH)2/C: Evidence for a Soluble Palladium Catalyst | The Journal of Organic Chemistry

Compounds and Catalysts
Compounds and Catalysts

Review Article A Review on Palladium Catalyzed Coupling Reactions
Review Article A Review on Palladium Catalyzed Coupling Reactions

Pd(OH)2/C (Pearlman's Catalyst): A Highly Active Catalyst for Fukuyama,  Sonogashira, and Suzuki Coupling Reactions | The Journal of Organic  Chemistry
Pd(OH)2/C (Pearlman's Catalyst): A Highly Active Catalyst for Fukuyama, Sonogashira, and Suzuki Coupling Reactions | The Journal of Organic Chemistry

Organic Syntheses Procedure
Organic Syntheses Procedure

Elaboration of the ether cleaving ability and selectivity of the classical Pearlman's  catalyst [Pd(OH)2/C]: concise synthesis of a precursor for a myo-inositol  pyrophosphate - ScienceDirect
Elaboration of the ether cleaving ability and selectivity of the classical Pearlman's catalyst [Pd(OH)2/C]: concise synthesis of a precursor for a myo-inositol pyrophosphate - ScienceDirect

Elaboration of the ether cleaving ability and selectivity of the classical Pearlman's  catalyst [Pd(OH)2/C]: concise synthesis of a precursor for a myo-inositol  pyrophosphate - ScienceDirect
Elaboration of the ether cleaving ability and selectivity of the classical Pearlman's catalyst [Pd(OH)2/C]: concise synthesis of a precursor for a myo-inositol pyrophosphate - ScienceDirect

Air Nomads
Air Nomads

Palladium hydroxide on carbon loading 20wt. dry basis, support carbon, wet  12135-22-7
Palladium hydroxide on carbon loading 20wt. dry basis, support carbon, wet 12135-22-7

Pearlmans Catalyst | H2O2Pd | ChemSpider
Pearlmans Catalyst | H2O2Pd | ChemSpider

Pd/C: An Old Catalyst for New Applications – Its Use for the Suzuki–Miyaura  Reaction - Felpin - 2006 - European Journal of Organic Chemistry - Wiley  Online Library
Pd/C: An Old Catalyst for New Applications – Its Use for the Suzuki–Miyaura Reaction - Felpin - 2006 - European Journal of Organic Chemistry - Wiley Online Library

Direct arylation of heteroaromatic substrate with Pearlman's catalyst. |  Download Scientific Diagram
Direct arylation of heteroaromatic substrate with Pearlman's catalyst. | Download Scientific Diagram

Synthesis of (+)-ribostamycin by catalytic, enantioselective hydroamination  of benzene | Nature Synthesis
Synthesis of (+)-ribostamycin by catalytic, enantioselective hydroamination of benzene | Nature Synthesis

Catalysts | Free Full-Text | Kinetic Resolution of Racemic Amines to  Enantiopure (S)-amines by a Biocatalytic Cascade Employing Amine  Dehydrogenase and Alanine Dehydrogenase
Catalysts | Free Full-Text | Kinetic Resolution of Racemic Amines to Enantiopure (S)-amines by a Biocatalytic Cascade Employing Amine Dehydrogenase and Alanine Dehydrogenase