in copper-catalyzed heterogeneous catalysis are enormous as less research has been
carried out in this area compared to homogeneous systems. This part covers the
recent recyclable protocols for the CÀN bond forming reactions between aromatic,
heterocyclic, and aliphatic-amines with aryl iodides, bromides, chlorides, and
arylboronic acids employing copper mediated systems.
The last chapter by Monnier and Taillefer focuses on the copper-catalyzed
formation of C(sp
2 )-N bond via the coupling of nitrogen nucleophiles
(N-heterocycles, amines, anilines, amides, ammonia, azides, hydroxylamines,
nitrites salts, phosphonic amides) with aryl halides. The authors also present C
(aryl)–N bond formation as a result of the coupling between these nucleophiles and
aryl-boronic acids (the Chan–Lam reaction).
We would like to thank the authors for their diligent work on this hot topic.
Montpellier, France
Marc Taillefer
Shanghai, China
Dawei Ma
vi
Preface
carried out in this area compared to homogeneous systems. This part covers the
recent recyclable protocols for the CÀN bond forming reactions between aromatic,
heterocyclic, and aliphatic-amines with aryl iodides, bromides, chlorides, and
arylboronic acids employing copper mediated systems.
The last chapter by Monnier and Taillefer focuses on the copper-catalyzed
formation of C(sp
2 )-N bond via the coupling of nitrogen nucleophiles
(N-heterocycles, amines, anilines, amides, ammonia, azides, hydroxylamines,
nitrites salts, phosphonic amides) with aryl halides. The authors also present C
(aryl)–N bond formation as a result of the coupling between these nucleophiles and
aryl-boronic acids (the Chan–Lam reaction).
We would like to thank the authors for their diligent work on this hot topic.
Montpellier, France
Marc Taillefer
Shanghai, China
Dawei Ma
vi
Preface
