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Lakshminarayanan, Vasudevan (author), Chockalingam, Cindhuja (author), Mendes, E. (author), van Esch, J.H. (author)
Properties such as shear modulus, gelation time, structure of supramolecular hydrogels are strongly dependent on self-assembly, gelation triggering mechanism and processes used to form the gel. In our work we extend reported rheology analysis methodologies to pH-triggered supramolecular gels to understand structural insight using a model...
journal article 2021
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Zhang, K. (author), Gil Arranja, A. (author), Chen, Hongyu (author), Mytnyk, S. (author), Wang, Y. (author), Oldenhof, S. (author), van Esch, J.H. (author), Mendes, E. (author)
The last decade has witnessed great progress in understanding and manipulating self-assembly of block copolymers in solution. A wide variety of micellar structures can be created and many promising applications in bioscience have been reported. In particular, nano-fibrous micelles provide a great platform to mimic the filamentous structure of...
journal article 2018
document
Wang, Yiming (author), Piskorz, T.K. (author), Lovrak, M. (author), Mendes, E. (author), Guo, Xuhong (author), Eelkema, R. (author), van Esch, J.H. (author)
Here, transient supramolecular hydrogels that are formed through simple aging-induced seeded self-assembly of molecular gelators are reported. In the involved molecular self-assembly system, multicomponent gelators are formed from a mixture of precursor molecules and, typically, can spontaneously self-assemble into thermodynamically more...
journal article 2020
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Zhang, K. (author), Suratkar, A.P. (author), Vedaraman, S. (author), Lakshminarayanan, V. (author), Jennings, L. (author), Glazer, P.J. (author), van Esch, J.H. (author), Mendes, E. (author)
While the formation of (tri)block copolymer hydrogels has been extensively investigated, such studies mostly focused on equilibrium self-assembling whereas the use of preformed structures as building blocks such as out of equilibrium, quenched, nanofibrillar micelles is still a challenge. Here, we demonstrate that quenched, ultralong...
journal article 2018
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Wang, Yiming (author), Xu, Zhi (author), Lovrak, M. (author), le Sage, V.A.A. (author), Zhang, K. (author), Guo, Xuhong (author), Eelkema, R. (author), Mendes, E. (author), van Esch, J.H. (author)
Supramolecular structures with strain-stiffening properties are ubiquitous in nature but remain rare in the lab. Herein, we report on strain-stiffening supramolecular hydrogels that are entirely produced through the self-assembly of synthetic molecular gelators. The involved gelators self-assemble into semi-flexible fibers, which thereby...
journal article 2020
document
Liu, Q. (author), Zhao, M. (author), Mytnyk, S. (author), Klemm, B. (author), Zhang, K. (author), Wang, Y. (author), Yan, Dadong (author), Mendes, E. (author), van Esch, J.H. (author)
Hydrogel microparticles are important in materials engineering, but their applications remain limited owing to the difficulties associated with their manipulation. Herein, we report the self-orientation of crescent-shaped hydrogel microparticles and elucidate its mechanism. Additionally, the microparticles were used, for the first time, as...
journal article 2019
document
Lakshminarayanan, Vasudevan (author), Poltorak, L. (author), Bosma, D. (author), Sudhölter, Ernst J. R. (author), van Esch, J.H. (author), Mendes, E. (author)
Controlled localization of platinum nanoparticles (Pt NPs) at a solid support assisted by a polarized liquid-liquid interface is reported. Electrocatalytic water oxidation resulted in local pH modulation followed by the directed self-assembly of a dibenzoyl-l-cystine hydrogelator forming a structured hydrogel retaining the shape of the Pt NP...
journal article 2019
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