Skip to main content
Top

A TEMPO-catalyzed oxidation–reduction method to probe surface and anhydrous crystalline-core domains of cellulose microfibril bundles

  • 15-04-2021
  • Original Research
Published in:

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The study focuses on the TEMPO-catalyzed oxidation method to investigate the surface and anhydrous crystalline-core domains of cellulose microfibrils. It reveals that not all glucan chains are in crystalline conformations, and surface chains adopt different conformations than the crystalline core. The method also shows that cellulose microfibrils aggregate into macrofibrils, creating larger zones of anhydrous material, which significantly impacts recalcitrance. The results highlight the complexity of cellulose structure and its implications for biofuel production, suggesting that cellulose bundling is a major factor of recalcitrance.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Engineering + Technology"

Online-Abonnement

Springer Professional "Engineering + Technology" gives you access to:

  • more than 75.000 books
  • more than 390 journals

from the following specialised fileds:

  • Automotive
  • Business IT + Informatics
  • Construction + Real Estate
  • Electrical Engineering + Electronics
  • Energy + Sustainability
  • Mechanical Engineering + Materials
  • Surfaces + Materials Technology





 

Secure your knowledge advantage now!

Springer Professional "Business + Economics & Engineering + Technology"

Online-Abonnement

Springer Professional "Business + Economics & Engineering + Technology" gives you access to:

  • more than 130.000 books
  • more than 540 journals

from the following subject areas:

  • Automotive
  • Construction + Real Estate
  • Business IT + Informatics
  • Electrical Engineering + Electronics
  • Energy + Sustainability
  • Finance + Banking
  • Management + Leadership
  • Marketing + Sales
  • Mechanical Engineering + Materials
  • Surfaces + Materials Technology
  • Insurance + Risk


Secure your knowledge advantage now!

Title
A TEMPO-catalyzed oxidation–reduction method to probe surface and anhydrous crystalline-core domains of cellulose microfibril bundles
Authors
Tânia M. Shiga
Haibing Yang
Bryan W. Penning
Anna T. Olek
Maureen C. McCann
Nicholas C. Carpita
Publication date
15-04-2021
Publisher
Springer Netherlands
Published in
Cellulose / Issue 9/2021
Print ISSN: 0969-0239
Electronic ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-021-03815-9
This content is only visible if you are logged in and have the appropriate permissions.
This content is only visible if you are logged in and have the appropriate permissions.

Premium Partner

    Image Credits
    Korero Solutions/© Korero Solutions