Defence is held on 4.2.2022 15:00 – 18:00 https://aalto.zoom.us/j/64161649189The self-assembly of biobased materials in water is a fundamental pillar of life, with natural molecules and biocolloids assembling into well-organized structures displaying a myriad of functions. Wetting forces and geometry of the associated interfaces often guide the interfacial interactions and consequent structure formation of these natural materials. Therefore, this thesis aims at using non-wetting and highly wetting surfaces to form new hierarchical assemblies from some of the most important biocolloids available. First, nanocellulose-producing bacteria were used to form robust 3D biofilms, where hydrophobic particles and superhydrophobic moulds guided th...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
Defence is held on 27.1.2022 18:00 – 21:00 https://aalto.zoom.us/j/62396613471This thesis investi...
This work introduces novel techniques for the fabrication of bio-inspired hierarchical micro- and na...
| openaire: EC/H2020/788489/EU//BioELCellAdhesion occurs by covalent bonding, as in reactive structu...
| openaire: EC/H2020/788489/EU//BioElCellSuperhydrophobic surfaces are promising for preventing foul...
The fabrication of functional nanostructured materials for sensing, encapsulation and delivery requi...
Effective integration of molecular self?assembly and additive manufacturing would provide a technolo...
Tissue engineering aims to capture details of the extracellular matrix (ECM) that stimulate cell gro...
Effective integration of molecular self‐assembly and additive manufacturing would provide a technolo...
Nature has evolved to grow and regenerate tissues and organs using self-assembling processes capable...
The study presented in this Thesis is focussed on the characterization and the design of new polymer...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
Construction of textured bioinspired surfaces with refined structures that exhibit superior wetting ...
Nature has created an array of superhydrophobic surfaces that possess water-repellent, self-cleaning...
Immobilization of individual cells and collections of cells in well-defined, reproducible, nano-to-m...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
Defence is held on 27.1.2022 18:00 – 21:00 https://aalto.zoom.us/j/62396613471This thesis investi...
This work introduces novel techniques for the fabrication of bio-inspired hierarchical micro- and na...
| openaire: EC/H2020/788489/EU//BioELCellAdhesion occurs by covalent bonding, as in reactive structu...
| openaire: EC/H2020/788489/EU//BioElCellSuperhydrophobic surfaces are promising for preventing foul...
The fabrication of functional nanostructured materials for sensing, encapsulation and delivery requi...
Effective integration of molecular self?assembly and additive manufacturing would provide a technolo...
Tissue engineering aims to capture details of the extracellular matrix (ECM) that stimulate cell gro...
Effective integration of molecular self‐assembly and additive manufacturing would provide a technolo...
Nature has evolved to grow and regenerate tissues and organs using self-assembling processes capable...
The study presented in this Thesis is focussed on the characterization and the design of new polymer...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
Construction of textured bioinspired surfaces with refined structures that exhibit superior wetting ...
Nature has created an array of superhydrophobic surfaces that possess water-repellent, self-cleaning...
Immobilization of individual cells and collections of cells in well-defined, reproducible, nano-to-m...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
Defence is held on 27.1.2022 18:00 – 21:00 https://aalto.zoom.us/j/62396613471This thesis investi...
This work introduces novel techniques for the fabrication of bio-inspired hierarchical micro- and na...