Microcrystalline cellulose-based hydrogels were made using never-dried MCC (AaltoCellTM) as a raw material for a high-pressure mechanical treatment consisting of one to five passes at 700 bars. The effects of the mechanical treatment on the crystalline structure, morphology, geometrical dimensions, and specific surface area as well as rheological properties of the manufactured cellulose gel product were investigated. The results indicated that the process detached part of the crystalline area of the cellulose, resulting in loose particle architecture, increased surface area and porosity, and thus more accessible and reactive material. Due to the creation of the new internal surface area and porosity, more hydrogen bonds were formed between ...
To facilitate functional hydrogel part production using the indirect wax mould method, it is necessa...
Screen-additive manufacturing (SAM) is a potential method for producing small intricate parts withou...
International audienceHighly porous, lightweight versatile cellulose materials were prepared via dis...
Cellulose-based hydrogels were prepared by dissolving cellulose in aqueous sodium hydroxide (NaOH)/u...
Cellulose-based hydrogels were prepared by dissolving cellulose in aqueous sodium hydroxide (NaOH)/u...
This paper takes a comparative approach in characterizing two types of nano-scale cellulosic particl...
This paper discusses the influence of reactor design and initial consistency when partially hydrolyz...
In this work, non-derivatized cellulose pulp was dissolved in a cold alkali solution (LiOH/urea) and...
Novel hydrogels were prepared starting from different cellulose allomorphs (cellulose I, II, and III...
Cellulose-based biocomposites from nature exhibit remarkable mechanical properties which inspire to ...
We herein report the production of environmentally inspired all-cellulose composites in response to ...
This paper discusses the influence of reactor design and initial consistency when partially hydrolyz...
Cellulose was successfully extracted from wastepaper with a pre-treatment using sodium hydroxide (Na...
Hydrogel is a class of material described as ‘solid water’: it maintains properties of liquid water ...
In the present study, purified wet bacterial cellulose was disrupted into cellulose aqueous suspensi...
To facilitate functional hydrogel part production using the indirect wax mould method, it is necessa...
Screen-additive manufacturing (SAM) is a potential method for producing small intricate parts withou...
International audienceHighly porous, lightweight versatile cellulose materials were prepared via dis...
Cellulose-based hydrogels were prepared by dissolving cellulose in aqueous sodium hydroxide (NaOH)/u...
Cellulose-based hydrogels were prepared by dissolving cellulose in aqueous sodium hydroxide (NaOH)/u...
This paper takes a comparative approach in characterizing two types of nano-scale cellulosic particl...
This paper discusses the influence of reactor design and initial consistency when partially hydrolyz...
In this work, non-derivatized cellulose pulp was dissolved in a cold alkali solution (LiOH/urea) and...
Novel hydrogels were prepared starting from different cellulose allomorphs (cellulose I, II, and III...
Cellulose-based biocomposites from nature exhibit remarkable mechanical properties which inspire to ...
We herein report the production of environmentally inspired all-cellulose composites in response to ...
This paper discusses the influence of reactor design and initial consistency when partially hydrolyz...
Cellulose was successfully extracted from wastepaper with a pre-treatment using sodium hydroxide (Na...
Hydrogel is a class of material described as ‘solid water’: it maintains properties of liquid water ...
In the present study, purified wet bacterial cellulose was disrupted into cellulose aqueous suspensi...
To facilitate functional hydrogel part production using the indirect wax mould method, it is necessa...
Screen-additive manufacturing (SAM) is a potential method for producing small intricate parts withou...
International audienceHighly porous, lightweight versatile cellulose materials were prepared via dis...