Multiscale interface engineering enables strong and water resistant wood bonding

S Shiying Zhang (School of Chemical Sciences) S Salla Koskela H Halvar Meinhard P Paavo Penttilä M Muhammad Awais M Markus B. Linder S Shennan Wang L Lauri Rautkari

Abstract

Abstract The growing use of timber in construction has created an urgent need for high-performing engineered wood. Laminating timber facilitates production of structural components, but strong interfacial bonding is essential for engineered wood to outperform solid wood. Here we introduce a method for achieving strong wood bonding using an ionic liquid-dissolved cellulose solution. At the bonding interface, the dissolved cellulose fills the lumina and entangles with the wood cell wall, forming a dense cellulose network interconnecting with wood upon regeneration in water. Concurrent hot-pressing forms a permanently interlocked structure of wood cells. The multiscale bonded interface is water resistant with a shear strength over 20 MPa, nearly twice that of solid wood. This work presents an eco-friendly, high-performing wood bonding mechanism with promising applications in engineered wood products.

Article Details

Volume / Issue Vol. 16, Issue 1
Published August 25, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

S

Shiying Zhang

School of Chemical Sciences

S

Salla Koskela

H

Halvar Meinhard

P

Paavo Penttilä

M

Muhammad Awais

M

Markus B. Linder

S

Shennan Wang

L

Lauri Rautkari