Transition-Metal-Catalyzed Dehydrogenative (3+ 2) Annulation of Aromatic Compounds: Synthesis of Indenes and Indanes via Dual Functionalization of Benzylic and …

WQ Wu, H Shi - The Journal of Organic Chemistry, 2023 - ACS Publications
Intermolecular (3+ 2) annulation emerges as a potent approach for constructing 5-
membered carbocycles through the fusion of two distinct components. This synopsis …

Palladium Catalysis: Dependence of the Efficiency of C− C Bond Formation on Carboxylate Ligand and Alkali Metal Carboxylate or Carboxylic Acid Additive. Part A …

J Le Bras, J Muzart - Advanced Synthesis & Catalysis, 2023 - Wiley Online Library
A variety of Pd‐catalyzed reactions are carried out with palladium carboxylates in the
presence of carboxylic acids and/or alkali metal carboxylates. This review is Part A of three …

Dual C(sp3)–H and C(sp2)–H Activation of 8-Methylquinoline N-Oxides: A Route to Access C7–H Bond

S Mandal, M Barman, B Debnath… - Organic Letters, 2024 - ACS Publications
A Pd (II)-catalyzed regioselective dual C (sp3)–H/C7 (sp2)–H activation and annulation of 8-
methylquinoline N-oxides with maleimide has been accomplished. The use of N-oxide as a …

DFT Study on the Mechanism of the Palladium-Catalyzed [3 + 2] Annulation of Aromatic Amides with Maleimides via Benzylic and meta-C–H Bond Activation: Role of …

G Li, Z Shang, R Li, X Xu - The Journal of Organic Chemistry, 2023 - ACS Publications
The mechanism of the Ac-Gly-OH-assisted palladium-catalyzed [3+ 2] annulation of aromatic
amides with maleimides is investigated using density functional theory calculations. The …

Computational Insights into Palladium-Catalyzed Site-Selective Anilide and Benzamide-Type [3+ 2] Annulation via Double C–H Bond Activation

P Mondal, N Mandal, AK Pal… - The Journal of Organic …, 2024 - ACS Publications
The mechanism of palladium-catalyzed annulation reactions of benzamide-and anilide-type
aromatic systems with maleimides is investigated using density functional theory. Double C …

Palladium catalysis: dependence of the efficiency of C− C bond formation on carboxylate ligand and alkali metal carboxylate or carboxylic acid additive. Part C: the …

J Muzart - Advanced Synthesis & Catalysis, 2023 - Wiley Online Library
The efficiency of the formation of C− C bonds under palladium catalysis often depends on
the nature of the carboxylate ligand and carboxylic acids or alkali metal carboxylates …

Palladium‐Catalyzed C(sp3)−H Activation in A Monoterpene‐Based Compound Under Mild Conditions: A Combined Experimental and Theoretical Mechanistic …

TE Kokina, NA Shekhovtsov, AV Tkachev… - …, 2025 - Wiley Online Library
A rare example of the palladium–catalyzed sp3 C− H bond activation in a monoterpene‐
based compound has been observed in the reaction of PdCl2 with a (+)‐3‐carene‐based …

Palladium catalysis: dependence of the CC bond synthesis efficiency on carboxylate ligand and alkali metal carboxylate or carboxylic acid additive. Part A: the C (sp 2) …

J Muzart, J Le Bras - Advanced Synthesis and Catalysis, 2023 - hal.science
A variety of Pd-catalyzed reactions are carried out with palladium carboxylates in the
presence of carboxylic acids and/or alkali metal carboxylates. This review is Part A of three …