Topochemical engineering of hybrid materials is an efficient way of synthesizing hydrophobic and highly tensile fiber composites by utilizing the intermolecular hydrogen bonds in natural materials. These materials include wood pulp fibers, abietic acid (resin acid) and inexpensive metal salts. In this work, a hybrid composite was created using bleached and unbleached kraft pulp fibers as cellulose platform. In situ co-precipitation of layered double hydroxide (LDH) was performed to grow LDH crystals on the surface of the cellulose fibers, followed by the immobilization of abietic acid (AA) on LDH-grafted cellulose. Here we aimed to benefit from the hydrogen bonding between –OH groups of cellulose and LDH, and the –COOH groups of AA to obtai...
A sustainable strategy for synergistic surface engineering of lignocellulose and cellulose fibers de...
International audienceThe use of cellulosic fibres as reinforcement in a mineral matrix (in our case...
The growing demand for natural materials is overtaking the composite sector for various applications...
Topochemical engineering of hybrid materials is an efficient way of synthesizing hydrophobic and hig...
Cellulose-based materials are very attractive for emerging bioeconomy as they are renewable, inexpen...
The research around the pulp and paper (P&P) sector has changed dramatically during the past 15 year...
© 2017 Elsevier B.V. Technical composite materials derived from renewable sources are always of high...
Cellulose-based materials are very attractive for emerging bioeconomy as they are renewable, inexpen...
© 2015 by the authors. Inorganic Mg2+ and Al3+ containing layered double hydroxide (LDH) particles w...
This paper reports the preparation of class-II organic-inorganic hybrid materials by the heterogeneo...
Topochemical engineering is a method of designing the fractionation (disassembly) and fabrication (a...
Functionalization of papermaking pulp fibers using inorganic particles was investigated as a novel a...
© 2015 Elsevier Inc. All rights reserved. Synthesis of porous network structures of layered double h...
Due to the growing interest in biobased materials in today’s society, where the need for a cyclic ec...
International audienceAll-cellulose composites were prepared by dispersing kraft fibers in a matrix ...
A sustainable strategy for synergistic surface engineering of lignocellulose and cellulose fibers de...
International audienceThe use of cellulosic fibres as reinforcement in a mineral matrix (in our case...
The growing demand for natural materials is overtaking the composite sector for various applications...
Topochemical engineering of hybrid materials is an efficient way of synthesizing hydrophobic and hig...
Cellulose-based materials are very attractive for emerging bioeconomy as they are renewable, inexpen...
The research around the pulp and paper (P&P) sector has changed dramatically during the past 15 year...
© 2017 Elsevier B.V. Technical composite materials derived from renewable sources are always of high...
Cellulose-based materials are very attractive for emerging bioeconomy as they are renewable, inexpen...
© 2015 by the authors. Inorganic Mg2+ and Al3+ containing layered double hydroxide (LDH) particles w...
This paper reports the preparation of class-II organic-inorganic hybrid materials by the heterogeneo...
Topochemical engineering is a method of designing the fractionation (disassembly) and fabrication (a...
Functionalization of papermaking pulp fibers using inorganic particles was investigated as a novel a...
© 2015 Elsevier Inc. All rights reserved. Synthesis of porous network structures of layered double h...
Due to the growing interest in biobased materials in today’s society, where the need for a cyclic ec...
International audienceAll-cellulose composites were prepared by dispersing kraft fibers in a matrix ...
A sustainable strategy for synergistic surface engineering of lignocellulose and cellulose fibers de...
International audienceThe use of cellulosic fibres as reinforcement in a mineral matrix (in our case...
The growing demand for natural materials is overtaking the composite sector for various applications...