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Dive into the research topics where Martijn A. J. Gillissen is active.

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Featured researches published by Martijn A. J. Gillissen.


Journal of the American Chemical Society | 2011

Single-chain folding of polymers for catalytic systems in water

Takaya Terashima; Tristan Mes; Tom F. A. de Greef; Martijn A. J. Gillissen; Pol Besenius; Anja R. A. Palmans; E. W. Meijer

Enzymes are a source of inspiration for chemists attempting to create versatile synthetic catalysts. In order to arrive at a polymeric chain carrying catalytic units separated spatially, it is a prerequisite to fold these polymers in water into well-defined compartmentalized architectures thus creating a catalytic core. Herein, we report the synthesis, physical properties, and catalytic activity of a water-soluble segmented terpolymer in which a helical structure in the apolar core is created around a ruthenium-based catalyst. The supramolecular chirality of this catalytic system is the result of the self-assembly of benzene-1,3,5-tricarboxamide side chains, while the catalyst arises from the sequential ruthenium-catalyzed living radical polymerization of the different monomers followed by ligand exchange. The polymers exhibit a two-state folding process and show transfer hydrogenation in water.


Journal of the American Chemical Society | 2013

Orthogonal self-assembly in folding block copolymers

Nobuhiko Hosono; Martijn A. J. Gillissen; Yuanchao Li; Sergei S. Sheiko; Anja R. A. Palmans; E. W. Meijer

We herein report the synthesis and characterization of ABA triblock copolymers that contain two complementary association motifs and fold into single-chain polymeric nanoparticles (SCPNs) via orthogonal self-assembly. The copolymers were prepared using atom-transfer radical polymerization (ATRP) and possess different pendant functional groups in the A and B blocks (alcohols in the A block and acetylenes in the B block). After postfunctionalization, the A block contains o-nitrobenzyl-protected 2-ureidopyrimidinone (UPy) moieties and the B block benzene-1,3,5-tricarboxamide (BTA) moieties. While the protected UPy groups dimerize after photoinduced deprotection of the o-nitrobenzyl group, the BTA moieties self-assemble into helical aggregates when temperature is reduced. In a two-step thermal/photoirradiation treatment under dilute conditions, the ABA block copolymer forms both BTA-based helical aggregates and UPy dimers intramolecularly. The sequential association of the two self-assembling motifs results in single-chain folding of the polymer, affording nanometer-sized particles with a compartmentalized interior. Variable-temperature NMR studies showed that the BTA and UPy self-assembly steps take place orthogonally (i.e., without mutual interference) in dilute solution. In addition, monitoring of the intramolecular self-assembly of BTA moieties into helical aggregates by circular dichroism spectroscopy showed that the stability of the aggregates is almost independent of UPy dimerization. Size-exclusion chromatography (SEC) and small-angle X-ray scattering analysis provided evidence of significant reductions in the hydrodynamic volume and radius of gyration, respectively, after photoinduced deprotection of the UPy groups; a 30-60% reduction in the size of the polymer chains was observed using SEC in CHCl(3). Molecular imaging by atomic force microscopy (AFM) corroborated significant contraction of individual polymer chains due to intramolecular association of the BTA and UPy groups. The stepwise folding process resulting from orthogonal self-assembly-induced supramolecular interactions yields compartmentalized SCPNs comprised of distinct microdomains that mimick two secondary-structuring elements in proteins.


Polymer Chemistry | 2012

Single chain polymeric nanoparticles as compartmentalised sensors for metal ions

Martijn A. J. Gillissen; Ilja K. Voets; E. W. Meijer; Anja R. A. Palmans

3,3′-Bis(acylamino)-2,2′-bipyridine substituted benzene-1,3,5-tricarboxamide (BiPy-BTA) grafted polynorbornene polymers were prepared via ring-opening metathesis polymerisation using a third generation Grubbs catalyst. The polymers fold intramolecularly via π–π interactions into fluorescent, compartmentalised particles of nanometer-size in mixtures of tetrahydrofuran and methylcyclohexane. Spectroscopic and light scattering techniques show that the compact conformation of the folded polymer is affected by increasing the BiPy-BTA functionalisation degree and by changing the solvent polarity. Changes in the conformation are accompanied by changes in the fluorescence intensity. Due to the affinity of the 2,2′-bipyridine units for metal ions such as copper, the particles obtained are effective sensors for these metals. The compartmentalisation of the binding motifs in SCPNs proves to be advantageous in sensor applications of these particles.


Chemistry: A European Journal | 2012

Hydrogen Bonding Directed Supramolecular Polymerisation of Oligo(Phenylene‐Ethynylene)s: Cooperative Mechanism, Core Symmetry Effect and Chiral Amplification

Feng Wang; Martijn A. J. Gillissen; Patrick J. M. Stals; Anja R. A. Palmans; E. W. Meijer

The design of supramolecular motifs with tuneable stability and adjustable supramolecular polymerisation mechanisms is of crucial importance to precisely control the properties of supramolecular assemblies. This report focuses on constructing π-conjugated oligo(phenylene ethynylene) (OPE)-based one-dimensional helical supramolecular polymers that show a cooperative growth mechanism. Thus, a novel set of discotic molecules comprising a rigid OPE core, three amide groups, and peripheral solubilising wedge groups featuring C(3) and C(2) core symmetry was designed and synthesised. All of the discotic molecules are crystalline compounds and lack a columnar mesophase in the solid state. In dilute methylcyclohexane solution, one-dimensional supramolecular polymers are formed stabilised by threefold intermolecular hydrogen bonding and π-π interactions, as evidenced by (1)H NMR measurements. Small-angle X-ray and light scattering measurements reveal significant size differences between the columnar aggregates of C(3)- and C(2)-symmetrical discotics, that is, the core symmetry strongly influences the nature of the supramolecular polymerisation process. Temperature-dependent CD measurements show a highly cooperative polymerisation process for the C(3)-symmetrical discotics. In contrast, the self-assembly of C(2)-symmetrical discotics shows a smaller enthalpy release upon aggregation and decreased cooperativity. In all cases, the peripheral stereogenic centres induce a preferred handedness in the columnar helical aggregates. Moreover, one stereogenic centre suffices to fully bias the helicity in the C(2)-symmetrical discotics. Finally, chiral amplification studies with the C(3)-symmetrical discotics were performed by mixing chiral and achiral discotics (sergeants-and-soldiers experiment) and discotics of opposite chirality (majority-rules experiment). The results demonstrate a very strong sergeants-and-soldiers effect and a rather weak majority-rules effect.


Angewandte Chemie | 2012

Symmetry Breaking in the Self‐Assembly of Partially Fluorinated Benzene‐1,3,5‐tricarboxamides

Patrick J. M. Stals; Peter A. Korevaar; Martijn A. J. Gillissen; T.F.A. de Greef; Carel F. C. Fitié; Rint P. Sijbesma; Anja R. A. Palmans; E. W. Meijer

The interplay of two subsequent aggregation processes results in a symmetry-breaking phenomenon in an achiral self-assembling system. Partially fluorinated benzene-1,3,5-tricarboxamide molecules self-assemble into a racemic mixture of one-dimensional P- and M-helical aggregates, followed by bundling into optically active higher-order aggregates or fibers.


Polymer Chemistry | 2013

The balance between intramolecular hydrogen bonding, polymer solubility and rigidity in single-chain polymeric nanoparticles

Patrick J. M. Stals; Martijn A. J. Gillissen; Renaud Nicolaÿ; Anja R. A. Palmans; E. W. Meijer

A library of copolymers with pendant, protected ureido-pyrimidinone (UPy) groups was prepared applying controlled polymerization techniques. The polymer backbones were based on polyacrylate, polymethacrylate, polystyrene and polynorbornene and differ in stiffness, molecular weight and the linking moiety between the backbone and the UPy group. In all cases, the percentage of protected UPy groups was kept constant. The effect of solvent on the behaviour of the polymers before and after removal of the protecting groups was evaluated in, among others, chloroform and tetrahydrofuran (THF). After deprotection of the UPy protecting group, the UPys dimerize via four-fold H-bonding in THF, inducing a collapse into single-chain polymeric nanoparticles (SCPNs), as evidenced by a combination of 1H-NMR spectroscopy, size-exclusion chromatography and dynamic light scattering. In chloroform, on the other hand, dimerization of the UPy groups is present but interchain interactions occur as well, resulting in less-defined SCPNs. Remarkably, the flexibility of the polymer backbone, the polymer molecular weight and the nature of the linker unit all do not affect SCPN formation. In contrast, the interaction between solvent and the UPy moiety is a critical parameter for SCPN formation. For example, strong intramolecular dimerization of the UPys is observed in THF while interparticle interactions are suppressed. From this investigation we conclude that a wide variety of polymer backbones are suitable for polymer collapse via supramolecular interactions and thus allow for the formation of SCPNs but that the solvent choice is crucial to enhance intramolecular H-bonding and, at the same time, to suppress interparticle interactions.


Macromolecules | 2014

Folding polymers with pendant hydrogen bonding motifs in water : the effect of polymer length and concentration on the shape and size of single-chain polymeric nanoparticles

Patrick J. M. Stals; Martijn A. J. Gillissen; Tim F. E. Paffen; T.F.A. de Greef; M.M. Lindner; E. W. Meijer; Ara Anja Palmans; Ilja K. Voets


Journal of the American Chemical Society | 2014

Triple Helix Formation in Amphiphilic Discotics: Demystifying Solvent Effects in Supramolecular Self-Assembly

Martijn A. J. Gillissen; Marcel M. E. Koenigs; Jolanda J. H. Spiering; Jef A. J. M. Vekemans; Anja R. A. Palmans; Ilja K. Voets; E. W. Meijer


Macromolecules | 2013

Sticky Supramolecular Grafts Stretch Single Polymer Chains

Martijn A. J. Gillissen; Takaya Terashima; E. W. Meijer; Anja R. A. Palmans; Ilja K. Voets


Macromolecules | 2007

Supramolecular Copolyesters with Tunable Properties

D. J. M. van Beek; Martijn A. J. Gillissen; Bart A. C. van As; and Anja R. A. Palmans; Rint P. Sijbesma

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E. W. Meijer

Eindhoven University of Technology

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Anja R. A. Palmans

Eindhoven University of Technology

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Ilja K. Voets

Eindhoven University of Technology

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Patrick J. M. Stals

Eindhoven University of Technology

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Jef A. J. M. Vekemans

Eindhoven University of Technology

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Rint P. Sijbesma

Eindhoven University of Technology

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Tom F. A. de Greef

Eindhoven University of Technology

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Tristan Mes

Eindhoven University of Technology

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Brian J. Adzima

United States Department of Energy

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