Projekteja vuodessa
Abstrakti
Direct ink writing (DIW) of Pickering emulsions offers great potential for constructing on-demand objects. However, the rheological properties of fluid emulsions greatly undermines the shape fidelity and structural integrity of 3D-printed structures. We solve here these challenges and realize a new route towards complex constructs for actual deployment. A dynamic, supramolecular host-guest hydrogel based on poly(ethylene glycol) and α-cyclodextrin was synthesized in the continuous phase of cellulose nanocrystal-stabilized Pickering emulsions. The storage modulus of the obtained emulgels could reach up to ∼113 kPa, while being shear thinning and yielding precise printability. Diverse complex architectures were possible with high shape fidelity and structural integrity. The printed objects, for example a double-wall cylinder with 75 layers, demonstrated excellent dimensional stability (shrinkage of 7 ± 2% after freeze-drying). With the merits of a simple fabrication process and the high biocompatibility of all the components, the concept of dynamic supramolecular hydrogel-reinforced emulgels represent a potentially versatile route to construct new materials and structures VIA DIW for use in bioproducts and biomedical devices.
Alkuperäiskieli | Englanti |
---|---|
Sivut | 835-840 |
Sivumäärä | 6 |
Julkaisu | Materials Horizons |
Vuosikerta | 9 |
Numero | 2 |
Varhainen verkossa julkaisun päivämäärä | 14 jouluk. 2021 |
DOI - pysyväislinkit | |
Tila | Julkaistu - 7 helmik. 2022 |
OKM-julkaisutyyppi | A1 Julkaistu artikkeli, soviteltu |
Sormenjälki
Sukella tutkimusaiheisiin 'Pickering emulgels reinforced with host-guest supramolecular inclusion complexes for high fidelity direct ink writing'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.-
BioELCell: Bioproducts Engineered from Lignocelluloses: from plants and upcycling to next generation materials
Rojas Gaona, O., Abidnejad, R., Ajdary, R., Bhattarai, M., Zhu, Y., Zhao, B., Robertson, D., Reyes Torres, G., Johansson, L., Garcia Greca, L., Klockars, K., Kämäräinen, T., Majoinen, J., Tardy, B., Dufau Mattos, B. & Ressouche, E.
30/07/2018 → 31/07/2023
Projekti: EU: ERC grants
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Uusien biomateriaalien 3D-valmistus
Rojas Gaona, O., Ajdary, R., Robertson, D., Klockars, K., Lehtonen, J., Uddin, K., Huan, S. & Kämäräinen, T.
01/01/2017 → 30/04/2021
Projekti: Academy of Finland: Other research funding