Loading…
Solid base catalysts: fundamentals and their applications in organic reactions
•Covering from fundamentals to application of solid base catalysis.•Generation of basic site by removal of H2 and CO2 and elimination by surface atoms rearrangement.•List of various solid base catalysts.•Mechanistic studied of representative solid base-catalyzed reactions.•Several bifunctional catal...
Saved in:
Published in: | Applied catalysis. A, General General, 2015-09, Vol.504, p.103-109 |
---|---|
Main Author: | |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Summary: | •Covering from fundamentals to application of solid base catalysis.•Generation of basic site by removal of H2 and CO2 and elimination by surface atoms rearrangement.•List of various solid base catalysts.•Mechanistic studied of representative solid base-catalyzed reactions.•Several bifunctional catalysis in which basic sites function one part.•Perspectives of solid base catalysts.
Solid base catalysis studied over the last a half of century is reviewed briefly including mainly those performed in our laboratories. The review begins with advantages of solid base catalysts over homogeneous base catalyst in industrial use followed by definition of Brϕnsted base and Lewis base. The materials known as solid base catalysts are listed, and four reasons for which these materials are recognized as solid base catalyst are explained. For all solid base catalysts, variations in activity as a function of pretreatment temperature show a volcano shape; an incline with the temperature results from an appearance of basic sites by removal of water and carbon dioxide from the surface and a decline results from an elimination of basic sites by rearrangement of surface atoms. The reactions catalyzed by solid base catalysts can be classified into three types: double bond isomerization, addition of anion and proton to various double bonds, and alcohol decomposition. These are represented by 1-butene isomerization, hydrogenation of conjugated 1,3-butadiene and dehydration of 2-butanol. Their mechanisms are explained. In addition, bifunctional base-catalyzed reactions in which basic sites participate in one step of successive steps are exemplified for methyl isobutyl ketome synthesis, metathesis, Tishchenko reaction and side-chain alkylation of toluene. Some industrial processes and future perspectives are briefly described. |
---|---|
ISSN: | 0926-860X 1873-3875 |
DOI: | 10.1016/j.apcata.2014.10.060 |