Bio‐Based Foams to Function as Future Plastic Substitutes by Biomimicry: Inducing Hydrophobicity with Lignin

To replace common plastics, bio‐based alternatives are needed. Cellulose foams, as plant‐based materials, are the most attractive solution, being often biodegradable and inexpensive and having the potential for distributed production. Cellulose and its derivatives, as raw materials, present a fundamental challenge, as they are hydrophilic. Herein, this problem is solved by drawing inspiration from the hydrophobic barrier that lignin creates in wood and applying lignin to methylcellulose (MC) foams. The lignin (0.0–1.0 wt% being the range studied here) is applied directly to the suspension consisting of water and MC (1.8 wt%), which is then foamed and solidified to a dry 3D porous structure. By comparing different types of lignin and the resulting surface morphologies, it is shown that organosolv lignin (OL) most strongly self‐assembles to the air–foam interfaces, achieving area fractions up to 27%. Using different concentrations of OL, how hydrophobicity—described by the initial water contact angle and its time evolution—increases with increasing lignin concentration is then shown. Thus, significantly increased water resistance (up to 91 times higher compared to the pure MC foam), a crucial property for developing novel bio‐based materials that can compete with traditional plastics, is able to be achieved.

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

Bibliographic citation
Bio‐Based Foams to Function as Future Plastic Substitutes by Biomimicry: Inducing Hydrophobicity with Lignin ; day:03 ; month:08 ; year:2024 ; extent:9
Advanced engineering materials ; (03.08.2024) (gesamt 9)

Creator
Miranda‐Valdez, Isaac Yair
Mäkinen, Tero
Hu, Xiang
Lejon, Juha
Elamir, Mohamed
Viitanen, Leevi
Jannuzzi, Luisa
Koivisto, Juha
Alava, Mikko Juhani

DOI
10.1002/adem.202400233
URN
urn:nbn:de:101:1-2408041405489.871649340318
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 11:00 AM CEST

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Associated

  • Miranda‐Valdez, Isaac Yair
  • Mäkinen, Tero
  • Hu, Xiang
  • Lejon, Juha
  • Elamir, Mohamed
  • Viitanen, Leevi
  • Jannuzzi, Luisa
  • Koivisto, Juha
  • Alava, Mikko Juhani

Other Objects (12)