Novel Synthetic Chemistry of Ureas and Amides 2013th Edition

Novel Synthetic Chemistry of Ureas and Amides 2013th Edition book cover

Novel Synthetic Chemistry of Ureas and Amides 2013th Edition

Author(s): Marc Hutchby (Author)

  • Publisher: Springer
  • Publication Date: 30 Aug. 2012
  • Edition: 2013th
  • Language: English
  • Print length: 184 pages
  • ISBN-10: 3642320503
  • ISBN-13: 9783642320507

Book Description

In this thesis, the author investigates the chemistry and application of molecules containing urea and amide bonds. These bonds are some of the strongest known and are fundamental to biological processes. The author describes his discovery that sterically hindered ureas undergo solvolysis at room temperature under neutral conditions. This is a remarkable finding, since ureas are inert under these conditions and a general rule of chemistry is that hindered substrates are less reactive. Remarkably, the author translates these results to the correspondingly sterically hindered amides. This thesis has resulted in a number of outstanding publications in high profile journals. The unique method for breaking urea and amide bonds developed in this study is likely to have far reaching consequences for biological protein manipulation.

Editorial Reviews

From the Back Cover

In this thesis, the author investigates the chemistry and application of molecules containing urea and amide bonds. These bonds are some of the strongest known and are fundamental to biological processes. The author describes his discovery that sterically hindered ureas undergo solvolysis at room temperature under neutral conditions. This is a remarkable finding, since ureas are inert under these conditions and a general rule of chemistry is that hindered substrates are less reactive. Remarkably, the author translates these results to the correspondingly sterically hindered amides. This thesis has resulted in a number of outstanding publications in high profile journals. The unique method for breaking urea and amide bonds developed in this study is likely to have far reaching consequences for biological protein manipulation.

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