Structural transformations of even-numbered n-alkanes confined in mesopores
arXiv:cond-mat/0610030 · doi:10.1103/PhysRevE.74.031610
Abstract
The n-alkanes C12H26, C14H30, and C16H34 have been imbibed and solidified in mesoporous Vycor glass with a mean pore diameter of 10nm. The samples have been investigated by x-ray diffractometry and calorimetric measurements. The structures and phase sequences have been determined. Apart from a reduction and the hysteresis of the melting/freezing transition, pore confined C12 reproduces the liquid-triclinic phase sequence of the bulk material, but for C16 an orthorhombic rotator mesophase appears that in the bulk state is absent for C16 but well known from odd numbered alkanes of similar length. In pore confined C14 this phase shows up on cooling but not on heating.
5 pages, 8 figures
Cited by in corpus (6)
- Soft matter in hard confinement: phase transition thermodynamics, structure, texture, diffusion and flow in nanoporous media - topical review
- Spontaneous Imbibition Dynamics of an n-Alkane in Nanopores: Evidence of Meniscus Freezing and Monolayer Sticking
- Crystallization of medium length 1-alcohols in mesoporous silicon: An X-ray diffraction study
- Phase transitions and molecular dynamics of n-hexadecanol confined in silicon nanochannels
- Rotator phases in hexadecane emulsion drops revealed by X-ray synchrotron techniques
- Structure of rotator phases formed in C-C alkanes and their mixtures: in bulk and in emulsion drops