Computational Modelling of Cellulose Interactions for sustainable materials.

Description of the granted funding

Nanocrystalline cellulose provides a renewable, highly versatile, biobased and biodegradable material for, e.g., functional coatings, composite materials, personal or health care applications, and even electronics. Recently, also uses in fiber and textile industry have been demonstrated. Crucially for the environment and green approaches, nanocellulose derivatives provide environmentally friendly, sustainable alternatives to synthetic plastics. For all these uses, understanding and control of the interactions of crystalline cellulose with its surroundings are in key role. Data driven, computational approaches are key to advancing the field. This application is to apply for funding for doctoral degree completion in Aalto University on modelling and data-based approaches to understanding nanocrystalline interfaces.
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Starting year

2023

End year

2024

Granted funding

Zhennan Kou
24 000 €

Funder

KAUTE-säätiö

Funding instrument

Ph.D work

Other information

Funding decision number

KAUTE-säätiö_20230435

Fields of science

NATURAL SCIENCES

Keywords

cellulose, computational modelling, data approaches, sustainable biomaterials

Identified topics

lignin, cellulose