Purification of Laboratory Chemicals

Purification of Laboratory Chemicals

by W.L.F. Armarego
Purification of Laboratory Chemicals

Purification of Laboratory Chemicals

by W.L.F. Armarego

eBook

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Overview

The purpose of this book is to help chemists, biochemists and other scientists purify the chemical reagents that they use in their work. Despite the fact that commercially available chemicals are often of a very high quality, and quite satisfactory for some applications within science and technology, it is becoming almost as important to know what impurities are present and make allowance for them as to remove them completely. This book will show you how.

Chapter 1 has been reorganized and updated, and most of it is in smaller print in order not to increase the size of the book. Chapters 2 and 5 have been similarly altered and combined into one chapter, Chapter 2, again in order to save pages. 800 and 350 entries have been added to Chapter 3 (25% increase) and Chapter 4 (44% increase) respectively, and 400 entries (310% increase) were added to Chapter 5 (Chapter 6 in the third edition) making a total of 5700 entries, all resulting in an increase from 319 to 529 pages, i.e. ca 35%. This considerably expanded and revised fourth edition includes much new material dealing with modern reagents for natural products chemistry, protein biochemistry and molecular biology. It also includes many individual compounds not previously covered, and more information is given for most entries, including melting and boiling points, molecular weights, refractive indexes, densities and CAS registry numbers, as well as likely contaminants and storage conditions in appropriate cases.

Product Details

ISBN-13: 9780123821621
Publisher: Elsevier Science
Publication date: 10/17/2012
Sold by: Barnes & Noble
Format: eBook
Pages: 1024
File size: 15 MB
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About the Author

Wilfred L. F. Armarego graduated BSc (Hons) in 1953 and PhD from the University of London in 1956 and came to Australia in that year. After two years at the Central Research Laboratories (ICIANZ) in Melbourne, where he worked on plant growth substances, and one year on potentially carcinogenic polycyclic aromatic hydrocarbons at the University of Melbourne as Senior Demonstrator in Organic Chemistry, he joined the Department of Medical Chemistry as a Research Fellow in 1960. He became a Fellow in 1963 and was awarded a DSc degree (London) in 1968. He was promoted to Senior Fellow in 1967 and began research work on the biochemistry and molecular biology of pteridine-requiring enzymes related to the inherited metabolic disease phenylketonuria and its variants. He was head of the Protein Biochemistry Group and Pteridine Biochemistry Laboratory until his retirement in 1996. He is now a visiting fellow at the John Curtin School of Medical Research, and member of the editorial boards of ‘Medicinal Research Reviews’ and ‘Pteridines’ journals.

Table of Contents

1. Common Physical Techniques Used in Purification 2. Chemical Methods Used in Purification 3. Purification of Organic Chemicals 4. Purification of Inorganic and Metal-Organic Chemicals 5. Catalysts 6. Purification of Biochemicals 7. Nanomaterials and Nanotechnology

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The authoritative resource on purification of laboratory chemicals, now revised to include empirical formulae, physical data, and substance applications

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