Scanning Electron Diffraction data and Python Notebooks used for data analysis of cellulose nanofiber orientation in the cell walls of composite material, transparent wood. The notebooks can be used to create Figures 1c, 3a and 5d in publication "The nanoscale ordering of cellulose in a hierarchically structured hybrid material revealed using scanning electron diffraction"
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
Finding renewable alternatives to the commonly used reinforcement materials in composites is attract...
The structure of cellulose microfibrils in wood is not known in detail, despite the abundance of cel...
This chapter summarizes several techniques that have been used in the characterization of cellulose ...
Research data for the paper Nanoscale Electromechanical Properties of Template-Assisted Hierarchica...
The average lateral dimensions of cellulose microfibrils in paper sheets can be determined from the ...
International audience7 Nanocellulose consisting of crystalline cellulose nanoparticles has a high p...
Supporting data for the article titled "Hierarchical Self-Assembly of Cellulose Nanocrystals in a Co...
Fundamental insights into the macromolecular architecture of plant cell walls will elucidate new str...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
Cellulose is a pervasive polymer, displaying hierarchical lengthscales and exceptional strength and ...
International audienceThe hierarchical architecture of biopolymers induces remarkable behaviour. Woo...
Suspensions of cellulose nanocrystals may be prepared by hydrolysing wood pulp or cotton filter pape...
In trees, a-few-nanometers-wide crystalline fibrils of cellulose are tightly bundled with other biop...
In this study, cellulose nanofibers were obtained from wood pulp using a chemo-mechanical method and...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
Finding renewable alternatives to the commonly used reinforcement materials in composites is attract...
The structure of cellulose microfibrils in wood is not known in detail, despite the abundance of cel...
This chapter summarizes several techniques that have been used in the characterization of cellulose ...
Research data for the paper Nanoscale Electromechanical Properties of Template-Assisted Hierarchica...
The average lateral dimensions of cellulose microfibrils in paper sheets can be determined from the ...
International audience7 Nanocellulose consisting of crystalline cellulose nanoparticles has a high p...
Supporting data for the article titled "Hierarchical Self-Assembly of Cellulose Nanocrystals in a Co...
Fundamental insights into the macromolecular architecture of plant cell walls will elucidate new str...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
Cellulose is a pervasive polymer, displaying hierarchical lengthscales and exceptional strength and ...
International audienceThe hierarchical architecture of biopolymers induces remarkable behaviour. Woo...
Suspensions of cellulose nanocrystals may be prepared by hydrolysing wood pulp or cotton filter pape...
In trees, a-few-nanometers-wide crystalline fibrils of cellulose are tightly bundled with other biop...
In this study, cellulose nanofibers were obtained from wood pulp using a chemo-mechanical method and...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
Finding renewable alternatives to the commonly used reinforcement materials in composites is attract...
The structure of cellulose microfibrils in wood is not known in detail, despite the abundance of cel...