Porous Materials
Solids with engineered porosity — frameworks, gels, and templated solids.
Porous Materials — Solids with engineered porosity — frameworks, gels, and templated solids.
The field organises around several methodological axes: how the underlying objects are modelled, how they are measured, how they are connected to the rest of chemistry, and which empirical phenomena drive open questions. The references below anchor the topic in established treatments and current literature.
Foundations and core methods
A primary reference for this area is Materials Science and Engineering: An Introduction (Callister and Rethwisch, 2018), which lays out the core concepts that govern porous materials. The treatment frames the subject within the broader context of materials chemistry and motivates the conceptual vocabulary used throughout this page. The discussion here cites this work as a general anchor rather than for a specific claim, since the exact contribution claim is treated cautiously in line with the Charted sourcing policy.
A complementary perspective comes from Solid State Chemistry and its Applications (West, 2014), which provides further background on the methods and results most relevant to porous materials. Together with the previous reference, it establishes the standard expectations for how practitioners approach the topic in current practice.
Open questions
Open methodological questions in porous materials include the transferability of the standard methods to harder regimes, the integration of newer measurement and modelling tools, and the connection to neighbouring subfields of materials chemistry. Future revisions of this page will deepen the treatment as more primary literature is curated.
Prerequisites
Sources
- textbook · primary · 2018Materials Science and Engineering: An Introductioncallister-2018, rethwisch-2018
- textbook · primary · 2014Solid State Chemistry and its Applicationswest-anthony-2014
In context
Where this topic sits in the prerequisite graph. Click any node to jump.
Explore
- 01
Covalent Organic Frameworks
Crystalline porous polymers held by covalent bonds — design, synthesis, and function.
- 02
Porous Organic Cages
Discrete molecular cages with intrinsic porosity for separation and storage.
- 03
Aerogels
Ultra-low-density solids from sol–gel chemistry and supercritical drying.
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