Heterocyclic chemistry is one of the most important and attractive areas of organic chemistry. It involves the preparation of compounds endowed with very high structural diversity and plays a central role in a multitude of highly developed areas: fine chemicals, drugs, flavors, dyes, engineered materials, and many other kinds of products contain at least one heterocyclic ring in their molecular structure. Therefore, the discovery of new methods for heterocycle synthesis is a significant objective of modern organic chemists, especially if prepared in environmentally benign and synthetically efficient ways. In this context, this minireview focuses on the synergy of two green strategies, namely multicomponent reactions and palladium-catalyzed ...
Palladium-catalyzed processes provide an efficient strategy for functionalization of arenes and hete...
Heterocycles count among many natural products, such as vitamins, hormones, antibiotics, as well as ...
The importance of palladium-catalyzed cross coupling reactions in contemporary organic synthesis is ...
Heterocyclic chemistry is one of the most important and attractive areas of organic chemistry. It in...
Heterocyclic chemistry is one of the most important and attractive areas of organic chemistry. It in...
Heterocyclic chemistry is one of the most important and attractive areas of organic chemistry. It in...
The rationale of this chapter is to illustrate how palladium salts and complexes as catalysts are im...
Heterocycles are some of the most important and widely used motifs in synthetic and medicinal chemis...
Palladium-catalyzed coupling is a very convenient and useful method for the synthesis of heterocycle...
Palladium-catalyzed coupling is a very convenient and useful method for the synthesis of heterocycle...
Heterocycles are some of the most important and widely used motifs in synthetic and medicinal chemis...
Heterocycles are among the most common scaffolds in many organic molecules, e.g., vitamins, hormones...
Fused tricyclic heterocycles are frequently found in pharmaceuticals, bioactive natural products and...
Sequentially Pd-catalyzed processes are excellent entries to heterocycle synthesis. The broad mechan...
Sequentially Pd-catalyzed processes are excellent entries to heterocycle synthesis. The broad mechan...
Palladium-catalyzed processes provide an efficient strategy for functionalization of arenes and hete...
Heterocycles count among many natural products, such as vitamins, hormones, antibiotics, as well as ...
The importance of palladium-catalyzed cross coupling reactions in contemporary organic synthesis is ...
Heterocyclic chemistry is one of the most important and attractive areas of organic chemistry. It in...
Heterocyclic chemistry is one of the most important and attractive areas of organic chemistry. It in...
Heterocyclic chemistry is one of the most important and attractive areas of organic chemistry. It in...
The rationale of this chapter is to illustrate how palladium salts and complexes as catalysts are im...
Heterocycles are some of the most important and widely used motifs in synthetic and medicinal chemis...
Palladium-catalyzed coupling is a very convenient and useful method for the synthesis of heterocycle...
Palladium-catalyzed coupling is a very convenient and useful method for the synthesis of heterocycle...
Heterocycles are some of the most important and widely used motifs in synthetic and medicinal chemis...
Heterocycles are among the most common scaffolds in many organic molecules, e.g., vitamins, hormones...
Fused tricyclic heterocycles are frequently found in pharmaceuticals, bioactive natural products and...
Sequentially Pd-catalyzed processes are excellent entries to heterocycle synthesis. The broad mechan...
Sequentially Pd-catalyzed processes are excellent entries to heterocycle synthesis. The broad mechan...
Palladium-catalyzed processes provide an efficient strategy for functionalization of arenes and hete...
Heterocycles count among many natural products, such as vitamins, hormones, antibiotics, as well as ...
The importance of palladium-catalyzed cross coupling reactions in contemporary organic synthesis is ...