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Results: 8
Number of items: 8
  • Open Access
    Stuij, S. G., Biebricher, A., Gong, Z., Sacanna, S., Peterman, E., Heller, I., & Schall, P. (2022). Extreme mechanics of colloidal polymers under compression: Buckling, creep, and break-up. Physical Review Materials, 6(3), Article 035603. https://doi.org/10.1103/PhysRevMaterials.6.035603
  • Open Access
    Stuij, S. G., Jonas, H. J., Gong, Z., Sacanna, S., Kodger, T. E., Bolhuis, P. G., & Schall, P. (2021). Revealing viscoelastic bending relaxation dynamics of isolated semiflexible colloidal polymers. Soft Matter, 17(36), 8291-8299. https://doi.org/10.1039/d1sm00556a
  • Open Access
    Swinkels, P. J. M., Stuij, S. G., Gong, Z., Jonas, H., Ruffino, N., van der Linden, B., Bolhuis, P. G., Sacanna, S., Woutersen, S., & Schall, P. (2021). Revealing pseudorotation and ring-opening reactions in colloidal organic molecules. Nature Communications, 12, Article 2810. https://doi.org/10.1038/s41467-021-23144-6
  • Open Access
    Stuij, S., Rouwhorst, J., Jonas, H. J., Ruffino, N., Gong, Z., Sacanna, S., Bolhuis, P. G., & Schall, P. (2021). Revealing Polymerization Kinetics with Colloidal Dipatch Particles. Physical Review Letters, 127(10), Article 108001. https://doi.org/10.1103/PhysRevLett.127.108001
  • Open Access
    Jonas, H. J., Stuij, S. G., Schall, P., & Bolhuis, P. G. (2021). A temperature-dependent critical Casimir patchy particle model benchmarked onto experiment. Journal of Chemical Physics, 155(3), Article 034902. https://doi.org/10.1063/5.0055012
  • Open Access
    Stuij, S. G. (2020). Colloidal design: Building, bending and breaking. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Stuij, S., van Dorn, J. M., Kodger, T., Sprakel, J., Coulais, C., & Schall, P. (2019). Stochastic buckling of self-assembled colloidal structures. Physical Review Research, 1(2), Article 023033. https://doi.org/10.1103/PhysRevResearch.1.023033
  • Stuij, S. G., Labbé-Laurent, M., Kodger, T. E., Maciołek, A., & Schall, P. (2017). Critical Casimir interactions between colloids around the critical point of binary solvents. Soft Matter, 13(31), 5233-5249. https://doi.org/10.1039/c7sm00599g
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