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Adsorption of Gases on Solids01:28

Adsorption of Gases on Solids

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Adsorption is a process where molecules, known as the adsorbates, accumulate on a surface, which is referred to as the adsorbent or substrate. Occurring at the solid-gas interface, this phenomenon is crucial in various scientific and industrial contexts. The reverse of adsorption is desorption.Two types of adsorptions exist: physical (physisorption) and chemical (chemisorption). Physisorption involves gas molecules held to the solid's surface by relatively weak intermolecular van der Waals...
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Related Experiment Video

Updated: May 5, 2026

Monitoring Protein Adsorption with Solid-state Nanopores
08:51

Monitoring Protein Adsorption with Solid-state Nanopores

Published on: December 2, 2011

13.7K

An adsorbent with flexible nanoscopic pores.

Tom Willhammar1, Xiaodong Zou1

  • 1Department of Materials and Environmental Chemistry, Stockholm University, SE-106 91 Stockholm, Sweden.

Science (New York, N.Y.)
|April 28, 2022
PubMed
Summary

Scanning transmission electron microscopy revealed adaptive pore structures in zeolites. This advancement offers new insights into zeolite materials science and their applications.

Area of Science:

  • Materials Science
  • Chemistry

Background:

  • Zeolites are crystalline aluminosilicates with diverse industrial applications.
  • Understanding zeolite pore structure is crucial for optimizing their performance.
  • Previous imaging techniques had limitations in resolving dynamic pore changes.

Purpose of the Study:

  • To visualize the adaptive pore structures of zeolites.
  • To demonstrate the capability of scanning transmission electron microscopy (STEM) for in-situ zeolite analysis.

Main Methods:

  • Utilized advanced scanning transmission electron microscopy (STEM).
  • Applied high-resolution imaging techniques to capture zeolite structures.

Main Results:

  • Directly observed the dynamic and adaptive nature of zeolite pores.

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Last Updated: May 5, 2026

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  • Provided clear visualization of pore morphology changes under specific conditions.
  • Conclusions:

    • STEM is a powerful tool for studying zeolite structural dynamics.
    • The adaptive pore characteristics are key to zeolite functionality.