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Soft matter in hard confinement: phase transition thermodynamics, structure, texture, diffusion and flow in nanoporous media

TLDR
In this paper, a review of spatially confined, non-equilibrium physics in nanoporous media is presented. And a particular emphasis is put on texture formation upon crystallisation in nanopore-confined condensed matter, a topic both of high fundamental interest and of increasing nanotechnological importance.
Abstract
Spatial confinement in nanoporous media affects the structure, thermodynamics and mobility of molecular soft matter often markedly. This article reviews thermodynamic equilibrium phenomena, such as physisorption, capillary condensation, crystallisation, self-diffusion, and structural phase transitions as well as selected aspects of the emerging field of spatially confined, non-equilibrium physics, i.e. the rheology of liquids, capillarity-driven flow phenomena, and imbibition front broadening in nanoporous materials. The observations in the nanoscale systems are related to the corresponding bulk phenomenologies. The complexity of the confined molecular species is varied from simple building blocks, like noble gas atoms, normal alkanes and alcohols to liquid crystals, polymers, ionic liquids, proteins and water. Mostly, experiments with mesoporous solids of alumina, gold, carbon, silica, and silicon with pore diameters ranging from a few up to 50 nm are presented. The observed peculiarities of nanopore-confined condensed matter are also discussed with regard to applications. A particular emphasis is put on texture formation upon crystallisation in nanoporous media, a topic both of high fundamental interest and of increasing nanotechnological importance, e.g. for the synthesis of organic/inorganic hybrid materials by melt infiltration, the usage of nanoporous solids in crystal nucleation or in template-assisted electrochemical deposition of nano structures.

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Journal ArticleDOI

Nanoconfined Ionic Liquids

TL;DR: A comprehensive review of nanoconfined ILs, a new class of composites with the intrinsic chemistries of ILs and the original functions of solid matrices, highlighting the potential applications in diverse fields, including catalysis, gas capture and separation, ionogels, supercapacitors, carbonization, and lubrication.
Journal ArticleDOI

A critical review of water uptake by shales

TL;DR: In this paper, the authors provide a critical review of the observations (laboratory and field), the mechanisms behind those observations, and the models to mimic the imbibition behavior of shales.
Journal ArticleDOI

Crystallization in Confinement

TL;DR: The development of an enhanced understanding of the influence of confinement on crystal nucleation and growth will provide superior insight into crystallization processes in many real-world environments, and enable this phenomenon to be used to control crystallization in applications including nanomaterial synthesis, heavy metal remediation, and the prevention of weathering.
Journal ArticleDOI

Activated desorption at heterogeneous interfaces and long-time kinetics of hydrocarbon recovery from nanoporous media.

TL;DR: In this article, the authors use molecular simulation and statistical models to show that recovery is hampered by interfacial effects at the wet kerogen surface, and they build a statistical model of the recovery kinetics with a two-regime decline that is consistent with published data.
Journal ArticleDOI

Magic number colloidal clusters as minimum free energy structures.

TL;DR: It is shown that magic number clusters exist in a confined soft matter system with negligible interactions and free energy calculations demonstrate that colloidal clusters with magic numbers possess higher thermodynamic stability than those off magic numbers.
References
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Journal ArticleDOI

Triblock copolymer syntheses of mesoporous silica with periodic 50 to 300 angstrom pores

TL;DR: Use of amphiphilic triblock copolymers to direct the organization of polymerizing silica species has resulted in the preparation of well-ordered hexagonal mesoporous silica structures (SBA-15) with uniform pore sizes up to approximately 300 angstroms.
Journal ArticleDOI

Silicon quantum wire array fabrication by electrochemical and chemical dissolution of wafers

TL;DR: In this paper, free standing Si quantum wires can be fabricated without the use of epitaxial deposition or lithography using electrochemical and chemical dissolution steps to define networks of isolated wires out of bulk wafers.
Journal ArticleDOI

The Dynamics of Capillary Flow

TL;DR: In this article, the rate of penetration into a small cylindrical capillary of radius $r$ was shown to be: ρ(r}^{2}+4\ensuremath{\epsilon}r)
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Ionic Liquids-New "Solutions" for Transition Metal Catalysis.

TL;DR: There are indications that switching from a normal organic solvent to an ionic liquid can lead to novel and unusual chemical reactivity, which opens up a wide field for future investigations into this new class of solvents in catalytic applications.
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