Understanding the behaviour of self-assembled systems, from nanoscale building blocks to bulk materials, is a central theme for the rational design of high-performance materials. Herein, we revealed, at different length scales, how the self-assembly of TEMPO-oxidised cellulose nanocrystals (TOCNCs) into rod fractal gels is directed by the complexation of Fe3+ ions on the surface of colloidal particles. Different specificities in Fe3+ binding on the TOCNC surface and conformational changes of the nanocellulose chain were unveiled by paramagnetic NMR spectroscopy. The macroscopic properties of systems presenting different concentrations of TOCNCs and Fe3+ ions were investigated by rheology and microscopy, demonstrating the tunability of the s...
Cellulose nanocrystal (CNC) is a promising building block for the bottom-up assembly of novel lightw...
Cellulose being the most widely available biopolymer on Earth is attracting significant interest fro...
Helical liquid crystal self-assembly in suspensions of cellulose nanocrystals (CNCs), bioderived nan...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
Nanoparticles are very interesting components. Due to their very large specific surface area they po...
Nanoparticles are very interesting components. Due to their very large specific surface area they po...
Cellulose nanocrystals (CNCs) are bio-based rod-like nanoparticles with a quickly expanding market. ...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
In this project we will aim to elucidate the boundaries of nanoparticleself-assembly, using cellulos...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
Cellulose is a pervasive polymer, displaying hierarchical lengthscales and exceptional strength and ...
In a biomimetic approach,we aim to create hierarchical multi-functionalone-, two- and three-dimensio...
The fabrication of nano-scale devices is a challenging, but potentially important, technology that h...
In the quest to develop sustainable and environmentally friendly materials, cellulose is a promising...
Cellulose nanocrystal (CNC) is a promising building block for the bottom-up assembly of novel lightw...
Cellulose being the most widely available biopolymer on Earth is attracting significant interest fro...
Helical liquid crystal self-assembly in suspensions of cellulose nanocrystals (CNCs), bioderived nan...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
Nanoparticles are very interesting components. Due to their very large specific surface area they po...
Nanoparticles are very interesting components. Due to their very large specific surface area they po...
Cellulose nanocrystals (CNCs) are bio-based rod-like nanoparticles with a quickly expanding market. ...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
In this project we will aim to elucidate the boundaries of nanoparticleself-assembly, using cellulos...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
Cellulose is a pervasive polymer, displaying hierarchical lengthscales and exceptional strength and ...
In a biomimetic approach,we aim to create hierarchical multi-functionalone-, two- and three-dimensio...
The fabrication of nano-scale devices is a challenging, but potentially important, technology that h...
In the quest to develop sustainable and environmentally friendly materials, cellulose is a promising...
Cellulose nanocrystal (CNC) is a promising building block for the bottom-up assembly of novel lightw...
Cellulose being the most widely available biopolymer on Earth is attracting significant interest fro...
Helical liquid crystal self-assembly in suspensions of cellulose nanocrystals (CNCs), bioderived nan...