Organophosphorus Chemistry, Volume 44

Organophosphorus Chemistry, Volume 44

Author
David W. Allen (ed.), David Loakes (ed.), John C. Tebby (ed.)
Publisher
Royal Society of Chemistry
Language
English
Year
2015
Page
442
ISBN
1782621113,9781782621119
File Type
pdf
File Size
24.5 MiB

Product Description


Coverage in this annual review of the literature presents a comprehensive and critical survey of the vast field of study involving organophosphorus compounds, from phosphines and phosphonium salts through to phosphorus acid derivatives, nucleotides, ylides and phosphazenes. The critical reviews in this volume enable industrial and academic researchers to keep abreast of the latest developments in their specialist fields.


From the Inside Flap


Coverage in this annual review of the literature presents a comprehensive and critical survey of the vast field of study involving organophosphorus compounds, from phosphines and phosphonium salts through to phosphorus acid derivatives, nucleotides, ylides and phosphazenes. The critical reviews in this volume enable industrial and academic researchers to keep abreast of the latest developments in their specialist fields.


From the Back Cover


Coverage in this annual review of the literature presents a comprehensive and critical survey of the vast field of study involving organophosphorus compounds, from phosphines and phosphonium salts through to phosphorus acid derivatives, nucleotides, ylides and phosphazenes. The critical reviews in this volume enable industrial and academic researchers to keep abreast of the latest developments in their specialist fields.


About the Author


Professor David Allen is Emeritus professor of chemistry at the Sheffield Hallam University, UK. His main research interests are in phosphonium salts and related compounds. Current interests include the preparation of phosphonioalkyl derivatives of biologically active molecules, the phosphonioalkyl group facilitating the passage of the biologically active agent through cell membranes, and studies of the formation of biologically active surface-functionalised gold nanoparticles.

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