Solid-Phase Organic Synthesis and Catalysis: Some Recent Strategies Using Alumina, Silica, and Polyionic Resins
Author(s) -
Basudeb Basu,
Susmita Paul
Publication year - 2013
Publication title -
journal of catalysts
Language(s) - English
Resource type - Journals
eISSN - 2314-5102
pISSN - 2314-5110
DOI - 10.1155/2013/614829
Subject(s) - organic synthesis , catalysis , reagent , context (archaeology) , organic reaction , phase (matter) , chemistry , organic chemistry , solid phase synthesis , combinatorial chemistry , coupling reaction , metal , materials science , chemical engineering , peptide , paleontology , biochemistry , biology , engineering
Solid-phase organic synthesis (SPOS) and catalysis have gained impetus after the seminal discovery of Merrifield’s solid-phase peptide synthesis and also because of wide applicability in combinatorial and high throughput chemistry. A large number of organic, inorganic, or organic-inorganic hybrid materials have been employed as polymeric solid supports to promote or catalyze various organic reactions. This review article provides a concise account on our approaches involving the use of (i) alumina or silica, either having doped with metal salts or directly, and (ii) polyionic resins to either promote various organic reactions or to immobilize reagents/metal catalysts for subsequent use in hydrogenation and cross-coupling reactions. The reaction parameters, scopes, and limitations, particularly in the context of green chemistry, have been highlighted with pertinent approaches by other groups
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