Despite the relevance of water interactions, explicit analysis of vapor adsorption on biologically derived surfaces is often difficult. Here, a system was introduced to study the vapor uptake on a native polysaccharide surface; namely, cellulose nanocrystal (CNC) ultrathin films were examined with a quartz crystal microbalance with dissipation monitoring (QCM-D) and spectroscopic ellipsometry (SE). A significant mass uptake of water vapor by the CNC films was detected using the QCM-D upon increasing relative humidity. In addition, thickness changes proportional to changes in relative humidity were detected using SE. Quantitative analysis of the results attained indicated that in preference to being soaked by water at the point of hydration ...
Of the composite materials occurring in nature, the plant cell wall is among the most intricate, con...
Cellulose-water interactions are crucial to understand biological processes as well as to develop ta...
Cellulose nanocrystals (CNCs) exhibit outstanding gas barrier properties, which supports their use a...
International audienceDespite the relevance of water interactions, explicit analysis of vapor adsorp...
Despite the relevance of water interactions, explicit analysis of vapor adsorption on biologically d...
Despite the relevance of water interactions, explicit analysis of vapor adsorption on biologically d...
Humidity is an efficient instrument for facilitating changes in local architectures of two-dimension...
The aim of the presentation is to introduce a direct approach to systematically investigate and clar...
Biomimetic research typically focuses on a single aspect of the bigger picture in order to reproduce...
Cellulose nanoparticles exhibit distinct water uptake behaviour in response to changing humidity con...
This study aims at assessing the use of a quartz crystal microbalance (QCM) coupled with an adsorpti...
Water interactions of ultra-thin films of wood-derived polysaccharides were investigated by using su...
The coefficient of hygroscopic swelling (CHS) of self-organized and shear-oriented cellulose nanocry...
Cellulose is the main structural component of all plant fibers. Recent technology has enabled the to...
International audienceOf the composite materials occurring in nature, the plant cell wall is among t...
Of the composite materials occurring in nature, the plant cell wall is among the most intricate, con...
Cellulose-water interactions are crucial to understand biological processes as well as to develop ta...
Cellulose nanocrystals (CNCs) exhibit outstanding gas barrier properties, which supports their use a...
International audienceDespite the relevance of water interactions, explicit analysis of vapor adsorp...
Despite the relevance of water interactions, explicit analysis of vapor adsorption on biologically d...
Despite the relevance of water interactions, explicit analysis of vapor adsorption on biologically d...
Humidity is an efficient instrument for facilitating changes in local architectures of two-dimension...
The aim of the presentation is to introduce a direct approach to systematically investigate and clar...
Biomimetic research typically focuses on a single aspect of the bigger picture in order to reproduce...
Cellulose nanoparticles exhibit distinct water uptake behaviour in response to changing humidity con...
This study aims at assessing the use of a quartz crystal microbalance (QCM) coupled with an adsorpti...
Water interactions of ultra-thin films of wood-derived polysaccharides were investigated by using su...
The coefficient of hygroscopic swelling (CHS) of self-organized and shear-oriented cellulose nanocry...
Cellulose is the main structural component of all plant fibers. Recent technology has enabled the to...
International audienceOf the composite materials occurring in nature, the plant cell wall is among t...
Of the composite materials occurring in nature, the plant cell wall is among the most intricate, con...
Cellulose-water interactions are crucial to understand biological processes as well as to develop ta...
Cellulose nanocrystals (CNCs) exhibit outstanding gas barrier properties, which supports their use a...