Entropy-driven crystallization of flexible chains of hard spheres under confinement

ORAL

Abstract

Through extensive Monte Carlo simulations, we study the heterogeneous crystallization of linear, fully flexible chains of tangent hard spheres under confinement in one or three dimensions. Confinement is realized through the presence of flat, impenetrable, and parallel walls. The phase behavior is studied by employing a wide range of systems with varied average chain lengths and packing densities. For that, crystal nucleation and growth are analyzed through the Characteristic Crystallographic Element (norm) descriptor. The phenomenon is naturally split into two distinct contributions: surface crystallization on the walls, and bulk crystallization far from them. Depending on the simulation conditions, different morphologies are established in the bulk zone ranging from random hexagonal close-packed layers with a unique stacking direction, perpendicular to the walls (confinement in one dimension) to predominantly hexagonal close-packed (confinement in all dimensions) crystals. In parallel, surface crystals show perfection with a predominantly triangular character. Finally, we analyze the entropic origins of the phase transition and identify the similarities and differences with respect to the bulk, homogeneous crystallization.

*The authors acknowledge support through projects "RTI2018-097338-B-I00" and "PID2021-127533NB-I00" of MICINN/FEDER (Ministerio de Ciencia e Innovación, Fondo Europeo de Desarrollo Regional) and "M190020074B6" (Comunidad de Madrid-Spain, Regional Programme of Research and Technological Innovation). M.H. and D.M.F. acknowledge financial support through "Programa Propio UPM Santander" of Universidad Politécnica de Madrid (UPM) and Santander Bank.

Publication: [1] Ramos, P.M., Herranz, M., Foteinopoulou, K., Karayiannis, N.C., Laso, M., 2021. Entropy-Driven Heterogeneous Crystallization of Hard-Sphere Chains under Unidimensional Confinement. Polymers 13, 1352. doi:10.3390/polym13091352
[2] Ramos, P.M., Herranz, M., Martínez-Fernández, D., Foteinopoulou, K., Laso, M., Karayiannis, N.C., 2022. Crystallization of Flexible Chains of Tangent Hard Spheres under Full Confinement. The Journal of Physical Chemistry B 126, 5931–5947. doi:10.1021/acs.jpcb.2c03424

Presenters

  • Daniel Martínez-Fernández

    • Universidad Politécnica de Madrid, ETSII/ISOM

Authors

  • Daniel Martínez-Fernández

    • Universidad Politécnica de Madrid, ETSII/ISOM
  • Pablo M Ramos

    • Universidad Politécnica de Madrid, ETSII/ISOM
  • Miguel Herranz

    • Universidad Politécnico de Madrid, ETSII/ISOM
  • Katerina Foteinopoulo

    • Universidad Politécnica de Madrid, ETSII/ISOM
  • Nikos Karayiannis

    • Universidad Politécnica de Madrid, ETSII/ISOM
  • Manuel Laso

    • Universidad Politécnica de Madrid, ISOM/ETSII