Macropores Micropores

Macropores and micropores are pore-size classes that describe the void spaces within porous materials, where pore dimensions strongly influence storage, transport, and mechanical behavior. Macropores permit relatively rapid movement of fluids and gases, while micropores provide high internal surface area and can retain molecules through adsorption and capillary forces. Engineering researchers use pore-size analysis to relate microstructure to permeability, strength, moisture retention, and reaction rates in materials such as concrete, catalysts, membranes, soils, and porous electrodes. Controlling the balance between these pore populations supports the design of filtration systems, energy-storage devices, lightweight structures, and other materials with tailored performance.

Macropores Micropores - Related Videos

Research

JoVE Journal - Chemistry

Preparation of Macroporous Epitaxial Quartz Films on Silicon by Chemical Solution Deposition

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Cited by 7 •

2015

A protocol is presented for the preparation of piezoelectric macroporous epitaxial films of quartz on silicon by solution chemistry using dip-coating and thermal treatments in air.

Preparation of Highly Porous Coordination Polymer Coatings on Macroporous Polymer Monoliths for Enhanced Enrichment of Phosphopeptides

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Cited by 12 •

2015

A procedure for the preparation of porous hybrid separation media composed of a macroporous polymer monolith internally coated by a high surface area microporous coordination polymer is presented.

Layer-by-layer Synthesis and Transfer of Freestanding Conjugated Microporous Polymer Nanomembranes

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Cited by 3 •

2015

In this paper we describe the interfacial synthesis of conjugated microporous polymers (CMP) on sacrificial substrates, and the dissolution of the substrate for the preparation of freestanding CMP nanomembranes. In addition, we will describe how the fragile nanomembranes can be transferred to other substrates.

Interlinked Macroporous 3D Scaffolds from Microgel Rods

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2022

Microgel rods with complementary reactive groups are produced via microfluidics with the ability to interlink in aqueous solution. The anisometric microgels jam and interlink into stable constructs with larger pores compared to spherical-based systems. Microgels modified with GRGDS-PC form macroporous 3D constructs that can be used for cell culture.

Fabrication and Use of Dry Macroporous Alginate Scaffolds for Viral Transduction of T Cells

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Cited by 8 •

2022

Herein is a protocol for creating dry macroporous alginate scaffolds that mediate efficient viral gene transfer for use in genetic engineering of T cells, including T cells for CAR-T cell therapy. The scaffolds were shown to transduce activated primary T cells with >85% transduction.

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