The overarching objective of this Marie-Curie action was the development of new colloidal model systems for self-assembly purposes. The central and well-known concept exploited during this project is the so-called depletion force. This attractive force between colloidal particles is generated in the presence of specifically designed polymers and can be used to generate higher-order superstructures. The novel aspect of the performed research is that the polymers are not simply added to the colloidal dispersions, but rather synthetized in situ from their corresponding monomers. By growing the polymers, the attractive depletion force become time-dependent, which was hypothesized to lead to new out-of-equilibrium colloidal structures. Since the assembly of the particles is in principle governed by the polymerization that runs in the background, this system will be referred to as Polymerization-Induced Colloidal Assembly or PICA in short.
The vast majority of the work performed during this action revolved around the experimental realization of colloidal model systems for self-assembly purposes. This was achieved by combining polymer and colloid chemistry in an innovative way by introducing the PICA concept. To verify the feasibility of this new paradigm for colloidal assembly, the synthetic/experimental endeavors can be divided in three distinct elements: (i) development of experimental set-up, (ii) selection and optimization of suitable polymerization procedures and (iii) selection and synthesis of colloidal particles. With these three components in hand, the PICA concept was experimentally verified.
Part of the work performed were disseminated in scientific publications (6) and presentations (5). Most notable examples are listed below:
- B. G. P. van Ravensteijn*, I. K. Voets, Colloids Out of Equilibrium: An Uphill Battle, Phys. Today 2021
- B. G. P. van Ravensteijn*, I. K. Voets*, Nanoparticles Exploring the Macroscopic World. Matter 2021, 2021, 4, 2661.
- B. G. P. van Ravensteijn, P. A. Hage, I. K. Voets, Framed by Depletion. Nature Mater. 2020, 19, 1261.
- B. G. P. van Ravensteijn*, J. R. Magana, I. K. Voets, Manipulating Matter with a Snap of your Fingers: A Touch of Thanos in Colloid Science. Superhero Science and Technology, 2020, 1, 19.
- B. G. P. van Ravensteijn*, I. K. Voets, W. K. Kegel, R. Eelkema, Out-of-equilibrium Colloidal Assembly Driven by Chemical Reaction Networks. Langmuir 2020, 36, 10639.