Stereoselective Reduction Using Sodium Triacetoxyborodeuteride: Synthesis of Methyl 2,3-Di-O-benzyl-α-d-(4-2H)-glucopyranoside

H. Mobarak, O. Engstrom, Martina Lahmann, G. Widmalm, R. Roy (Editor), S. Vidal (Editor)

    Research output: Chapter in Book/Report/Conference proceedingChapter

    Abstract

    Volumes in the Proven Synthetic Methods Series address the concerns many chemists have regarding irreproducibility of synthetic protocols, lack of characterization data for new compounds, and inflated yields reported in chemical communications―trends that have recently become a serious problem. Featuring contributions from world-renowned experts and overseen by a highly respected series editor, Carbohydrate Chemistry: Proven Synthetic Methods, Volume 3 compiles reliable protocols for the preparation of intermediates for carbohydrate synthesis or other uses in the glycosciences. Exploring carbohydrate chemistry from both the academic and industrial points of view, this unique resource brings together useful information into one convenient reference. To ensure reproducibility, an independent checker has verified the experimental parts involved by repeating the protocols or using the methods. The book includes new or more detailed versions of previously published protocols as well as those published in not readily available journals. The essential characteristics of the protocols presented are reliability and the expectation of wide utility in the carbohydrate field. The protocols presented will be of wide use to a wide range of readers in the carbohydrate field, including undergraduates taking carbohydrate workshops.
    Original languageEnglish
    Title of host publicationCarbohydrate Chemistry: Proven Synthetic Methods
    Subtitle of host publicationVolume 3
    PublisherCRC Press
    Pages81-88
    Edition2015
    ISBN (Print)978-1466583573
    Publication statusPublished - 27 May 2015

    Fingerprint

    Dive into the research topics of 'Stereoselective Reduction Using Sodium Triacetoxyborodeuteride: Synthesis of Methyl 2,3-Di-O-benzyl-α-d-(4-2H)-glucopyranoside'. Together they form a unique fingerprint.

    Cite this