Fr. 135.00

Organotrifluoroborate Preparation, Coupling and Hydrolysis

English · Paperback / Softback

Shipping usually within 6 to 7 weeks

Description

Read more

Alistair Lennox's thesis reports on the reactivity of organotrifluoroborates, which are becoming increasingly important reagents in synthesis. The thesis is divided into three sections. The first section describes a method for preparing organotrifluoroborates. The second section reports on a mechanistic investigation into the main application of RBF3K reagents as coupling partners in Suzuki-Miyaura coupling, phenomena identified as arising from organotrifluoroborate hydrolysis and fluoride release. The final section reports on a detailed investigation into the hydrolysis mechanism, a prerequisite for their Suzuki-Miyaura coupling, and how it may be predicted and controlled. This research has uncovered many interesting and useful details and shows how problems associated with Suzuki-Miyaura coupling can best be addressed. There has already been wide industrial uptake of the new procedures and insights. The broad nature and clear and succinct style will make the thesis a valuable resource for anyone working in synthesis, organometallic chemistry, or in homogeneous catalysis.

List of contents

General Introduction.- Organotrifluoroborate Preparation.- Organotrifluoroborate Coupling.- Organotrifluoroborate Hydrolysis.- Conclusions and Future Work.- Experimental: General Experimental Details.- Experimental: Organotrifluoroborate Preparation.- Experimental: Organotrifluoroborate Coupling.- Experimental: Organotrifluoroborate Hydrolysis.

About the author

Dr. Lennox grew up in York, received his undergraduate degree from the University of Manchester and his PhD from the University of Bristol. His interests lie in organic reaction mechanisms, of which his PhD thesis was focussed and the subject of a book he is currently co-writing.

Summary

Alistair Lennox's thesis reports on the reactivity of organotrifluoroborates, which are becoming increasingly important reagents in synthesis. The thesis is divided into three sections. The first section describes a method for preparing organotrifluoroborates. The second section reports on a mechanistic investigation into the main application of RBF3K reagents as coupling partners in Suzuki-Miyaura coupling, phenomena identified as arising from organotrifluoroborate hydrolysis and fluoride release. The final section reports on a detailed investigation into the hydrolysis mechanism, a prerequisite for their Suzuki-Miyaura coupling, and how it may be predicted and controlled. This research has uncovered many interesting and useful details and shows how problems associated with Suzuki-Miyaura coupling can best be addressed. There has already been wide industrial uptake of the new procedures and insights. The broad nature and clear and succinct style will make the thesis a valuable resource for anyone working in synthesis, organometallic chemistry, or in homogeneous catalysis.

Product details

Authors Alastair J J Lennox, Alastair J. J. Lennox
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2016
 
EAN 9783319377346
ISBN 978-3-31-937734-6
No. of pages 223
Dimensions 155 mm x 13 mm x 235 mm
Weight 371 g
Illustrations XV, 223 p. 308 illus., 96 illus. in color.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Chemistry > Organic chemistry

B, ORGANIC CHEMISTRY, Industrielle Chemie und Chemietechnologie, Katalyse, Catalysis, Chemistry and Materials Science, Chemical Engineering, Industrial Chemistry, Industrial chemistry & chemical engineering, Industrial Chemistry/Chemical Engineering

Customer reviews

No reviews have been written for this item yet. Write the first review and be helpful to other users when they decide on a purchase.

Write a review

Thumbs up or thumbs down? Write your own review.

For messages to CeDe.ch please use the contact form.

The input fields marked * are obligatory

By submitting this form you agree to our data privacy statement.