Entropy-driven heterogeneous crystallization of hard-sphere chains under unidimensional confinement

Ramos Fuertes, Pablo Miguel, Herranz Feito, Miguel ORCID: https://orcid.org/0000-0001-5831-9354, Foteinopoulou, Aikaterini ORCID: https://orcid.org/0000-0002-0960-9301, Karagiannis, Nikolaos ORCID: https://orcid.org/0000-0003-2762-270X and Laso Carbajo, Manuel ORCID: https://orcid.org/0000-0001-5350-7428 (2021). Entropy-driven heterogeneous crystallization of hard-sphere chains under unidimensional confinement. "Polymers", v. 13 (n. 9); p. 1352. ISSN 20734360. https://doi.org/10.3390/polym13091352.

Descripción

Título: Entropy-driven heterogeneous crystallization of hard-sphere chains under unidimensional confinement
Autor/es:
Tipo de Documento: Artículo
Título de Revista/Publicación: Polymers
Fecha: 1 Mayo 2021
ISSN: 20734360
Volumen: 13
Número: 9
Materias:
ODS:
Palabras Clave Informales: Athermal Chain; Confinement; Crystal Nucleation; Crystallization; Dense; Entropy-Driven; Face-Centered Cubic; Fivefold; Hard Sphere; Hexagonal Close-Packed; Length; Melts; Molecular Simulation; Monte Carlo; Monte-Carlo Simulations; Packing; Phase Transition; Phase-Behavior; Plates; Polymer; Polymer Crystallization; Square Crystal; Suspensions; Triangular Crystal
Escuela: E.T.S.I. Industriales (UPM)
Departamento: Ingeniería Química Industrial y del Medio Ambiente
Licencias Creative Commons: Reconocimiento

Texto completo

[thumbnail of 9333393.pdf] PDF (Portable Document Format) - Se necesita un visor de ficheros PDF, como GSview, Xpdf o Adobe Acrobat Reader
Descargar (8MB)

Resumen

We investigate, through Monte Carlo simulations, the heterogeneous crystallization of linear chains of tangent hard spheres under confinement in one dimension. Confinement is realized through flat, impenetrable, and parallel walls. A wide range of systems is studied with respect to their average chain lengths (N = 12 to 100) and packing densities (φ = 0.50 to 0.61). The local structure is quantified through the Characteristic Crystallographic Element (CCE) norm descriptor. Here, we split the phenomenon into the bulk crystallization, far from the walls, and the projected surface crystallization in layers adjacent to the confining surfaces. Once a critical volume fraction is met, the chains show a phase transition, starting from regions near the hard walls. The established crystal morphologies consist of alternating hexagonal close-packed or face-centered cubic layers with a stacking direction perpendicular to the confining walls. Crystal layer perfection is observed with an increasing concentration. As in the case of the unconstrained phase transition of athermal polymers at high densities, crystal nucleation and growth compete with the formation of sites of a fivefold local symmetry. While surface crystallites show perfection with a predominantly triangular character, the morphologies of square crystals or of a mixed type are also formed. The simulation results show that the rate of perfection of the surface crystallization is not significantly faster than that of the bulk crystallization.

Proyectos asociados

Tipo
Código
Acrónimo
Responsable
Título
Gobierno de España
MAT2015-70478-P
Sin especificar
Sin especificar
Sin especificar
Gobierno de España
RTI2018-097338-B-I00
Sin especificar
Sin especificar
Sin especificar
Universidad Politécnica de Madrid
Sin especificar
Sin especificar
Sin especificar
Programa Propio UPM Santander

Más información

ID de Registro: 93110
Identificador DC: https://oa.upm.es/93110/
Identificador OAI: oai:oa.upm.es:93110
URL Portal Científico: https://portalcientifico.upm.es/es/ipublic/item/9333393
Identificador DOI: 10.3390/polym13091352
URL Oficial: https://www.mdpi.com/2073-4360/13/9/1352
Depositado por: iMarina Portal Científico
Depositado el: 20 Ene 2026 08:21
Ultima Modificación: 20 Ene 2026 08:21