Porous Monolithic Objects

Porous monolithic objects are single, continuous solid structures containing an interconnected network of pores, combining the mechanical integrity of a monolith with the high internal surface area of a porous material. Their behavior depends on how pore size, shape, connectivity, and chemical composition control the movement and interaction of fluids, molecules, or ions within the framework. In chemistry, these materials support adsorption, heterogeneous catalysis, filtration, separation, and sensing by providing accessible pathways and active surfaces. Understanding the relationship between synthesis conditions, pore architecture, and transport properties helps researchers design lightweight, functional materials for analytical, environmental, and industrial applications.

Porous Monolithic Objects - Related Videos

Research

JoVE Journal - Chemistry

Assembly of Porous Monolithic Materials Using a Pickering Emulsion Strategy Stabilized by Metal–Organic Framework (MOF) Particles

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2026

This study successfully uses MIL-96(Al) Metal-Organic Frameworks particles to stabilize Pickering emulsions, which serve as templates to form mechanically robust, hierarchically porous monolithic materials. This method allows scalable MOF shaping while preserving crystal integrity. Tuning formulation is key to controlling pore size, interconnectivity, permeability, and robustness.

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.

Preparing Silica Aerogel Monoliths via a Rapid Supercritical Extraction Method

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Cited by 26 •

2014

This article describes a rapid supercritical extraction method for fabricating silica aerogels. By utilizing a confined mold and hydraulic hot press, monolithic aerogels can be made in eight hours or less.

Nanothermite with Meringue-like Morphology: From Loose Powder to Ultra-porous Objects

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Cited by 2 •

2017

This manuscript describes the synthesis of combustible aluminophosphate matrices by the reaction of orthophosphoric acid (H3PO4) with aluminum nanopowder. When this reaction is carried out with excess aluminum in the presence of tungsten trioxide nanopowder, it leads to a solid, porous nanothermite foam.

Research

JoVE Journal - Neuroscience
Free Sample

Creating Objects and Object Categories for Studying Perception and Perceptual Learning

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Cited by 12 •

2012

We describe a novel methodology for creating naturalistic 3-D objects and object categories with precisely defined feature variations. We use simulations of the biological processes of morphogenesis and phylogenesis to create novel, naturalistic virtual 3-D objects and object categories that can then be rendered as visual images or haptic objects.

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