Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the interaction between elementary building blocks, nature is able to optimize a large variety of materials with multiple functionalities. Such control is, however, extremely challenging in man-made materials, due to the difficulties in controlling their interaction at different length scales simultaneously. Here, hierarchical cholesteric architectures are obtained by the self-assembly of cellulose nanocrystals within shrinking, micron-sized aqueous droplets. This confined, spherical geometry drastically affects the colloidal self-assembly process, resulting in concentric ordering within the droplet, as confirmed by simulation. This provides a quantita...
Biological materials such as wood show outstanding properties due to the self assembly of components...
Crystalline polysaccharides, such as cellulose and chitin, can form superior assemblies in terms of ...
Hierarchical biomaterials have their place in the context of developing novel material systems parti...
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...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
By controlling the interaction of biological building blocks at the nanoscale, natural photonic nano...
By controlling the interaction of biological building blocks at the nanoscale, natural photonic nano...
By controlling the interaction of biological building blocks at the nanoscale, natural photonic nano...
Hierarchical biomaterials have their place in the context of developing novel material systems parti...
Understanding the behaviour of self-assembled systems, from nanoscale building blocks to bulk materi...
Supporting data for the article titled "Hierarchical Self-Assembly of Cellulose Nanocrystals in a Co...
We have studied how cellulose nanocrystals (CNC) self-assemble into liquid crystalline phases in shr...
We have studied how cellulose nanocrystals (CNC) self-assemble into liquid crystalline phases in shr...
In this project we will aim to elucidate the boundaries of nanoparticleself-assembly, using cellulos...
Biological materials such as wood show outstanding properties due to the self assembly of components...
Crystalline polysaccharides, such as cellulose and chitin, can form superior assemblies in terms of ...
Hierarchical biomaterials have their place in the context of developing novel material systems parti...
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...
Complex hierarchical architectures are ubiquitous in nature. By designing and controlling the intera...
By controlling the interaction of biological building blocks at the nanoscale, natural photonic nano...
By controlling the interaction of biological building blocks at the nanoscale, natural photonic nano...
By controlling the interaction of biological building blocks at the nanoscale, natural photonic nano...
Hierarchical biomaterials have their place in the context of developing novel material systems parti...
Understanding the behaviour of self-assembled systems, from nanoscale building blocks to bulk materi...
Supporting data for the article titled "Hierarchical Self-Assembly of Cellulose Nanocrystals in a Co...
We have studied how cellulose nanocrystals (CNC) self-assemble into liquid crystalline phases in shr...
We have studied how cellulose nanocrystals (CNC) self-assemble into liquid crystalline phases in shr...
In this project we will aim to elucidate the boundaries of nanoparticleself-assembly, using cellulos...
Biological materials such as wood show outstanding properties due to the self assembly of components...
Crystalline polysaccharides, such as cellulose and chitin, can form superior assemblies in terms of ...
Hierarchical biomaterials have their place in the context of developing novel material systems parti...