Sustainable Design for the Direct Fabrication and Highly Versatile Functionalization of Nanocelluloses

Abstract: This study describes a novel sustainable concept for the scalable direct fabrication and functionalization of nanocellulose from wood pulp with reduced energy consumption. A central concept is the use of metal‐free small organic molecules as mediators and catalysts for the production and subsequent versatile surface engineering of the cellulosic nanomaterials via organocatalysis and click chemistry. Here, “organoclick” chemistry enables the selective functionalization of nanocelluloses with different organic molecules as well as the binding of palladium ions or nanoparticles. The nanocellulosic material is also shown to function as a sustainable support for heterogeneous catalysis in modern organic synthesis (e.g., Suzuki cross‐coupling transformations in water). The reported strategy not only addresses obstacles and challenges for the future utilization of nanocellulose (e.g., low moisture resistance, the need for green chemistry, and energy‐intensive production) but also enables new applications for nanocellulosic materials in different areas.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Sustainable Design for the Direct Fabrication and Highly Versatile Functionalization of Nanocelluloses ; volume:1 ; number:7 ; year:2017 ; extent:6
Global challenges ; 1, Heft 7 (2017) (gesamt 6)

Creator
Afewerki, Samson
Alimohammadzadeh, Rana
Osong, Sinke H.
Tai, Cheuk‐Wai
Engstrand, Per
Córdova, Armando

DOI
10.1002/gch2.201700045
URN
urn:nbn:de:101:1-2022100508245232101197
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:25 AM CEST

Data provider

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Associated

  • Afewerki, Samson
  • Alimohammadzadeh, Rana
  • Osong, Sinke H.
  • Tai, Cheuk‐Wai
  • Engstrand, Per
  • Córdova, Armando

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