Skip to main navigation Skip to search Skip to main content

An International Laboratory Comparison Study on Approximating the Enthalpy of Adsorption via the Clausius-Clapeyron Approach: Article No. e202500332

  • Karen Heinselman
  • , Cullen Quine
  • , Katie Hurst
  • , Joy Cho
  • , Malia Wenny
  • , Jarad Mason
  • , Gaurav Verma
  • , Shengqian Ma
  • , Dalton Compton
  • , Nicholas Stadie
  • , Debabrata Sengupta
  • , Timur Islamoglu
  • , Omar Farah
  • , Claudia Zlotea
  • , Andrei Agafonov
  • , Mehrdad Asgari
  • , Ali Al-Shakhs
  • , Dolores Lozano-Castello
  • , David Fairen-Jimenez
  • , Hiroyasu Furukawa
  • Yuto Yabuuchi, Darren Broom, Michael Benham, Jose Villajos, Rafael Balderas-Xicohtencatl, Isabella Fackelmann, Michael Hirscher, William Hoover, William Morris, Timothy Wang, Philip Parilla, Thomas Gennett, Sarah Shulda
  • Harvard University
  • University of North Texas
  • Montana State University
  • Northwestern University
  • French National Centre for Scientific Research
  • University of Cambridge
  • Lawrence Berkeley National Laboratory
  • University of California at Berkeley
  • Hiden Isochema
  • Centro Iberico de Investigacion en Almacenamiento Energetico
  • Federal Institute for Materials Research and Testing Berlin
  • Max Planck Institute for Intelligent Systems
  • Tohoku University
  • NuMat Technologies

Research output: Contribution to journalArticlepeer-review

Abstract

Materials-based gas capture and storage is an increasingly important area of research. Robust and accurate determination of material properties is required for judicial selection of materials for specific applications and for engineering materials-based systems at scale. One key property is the strength of the adsorbate-adsorbent interaction often quantified via the isosteric enthalpy of adsorption. The heat of adsorption can be measured directly through calorimetry; however, a more widely used approach is to apply the Clausius-Clapeyron (CC) equation to adsorption isotherms collected at different temperatures. While this approach appears to be straightforward, there exist multiple variants in the application of the methodologies employed. This raises the question on how these variations may or may not affect the determined results. Presented here is a discussion of the most common methodologies and a comparison of indirect determinations (via CC) of the isosteric enthalpy of adsorption by different laboratories on identical material. Included in that comparison are discussions on the measurement and analysis reproducibility. Importantly, details of the methodologies are shown to be critical when comparing enthalpies among laboratories, and different methodologies contribute to significant discrepancies and artifacts in the results. Recommendations are provided to promote robust determination and the reporting thereof.
Original languageAmerican English
Number of pages11
JournalChemPhysChem
Volume27
Issue number7
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5900-94432

Keywords

  • adsorption enthalpy
  • enthalpy of adsorption
  • gas adsorption
  • isosteric heat
  • isotherm

Fingerprint

Dive into the research topics of 'An International Laboratory Comparison Study on Approximating the Enthalpy of Adsorption via the Clausius-Clapeyron Approach: Article No. e202500332'. Together they form a unique fingerprint.

Cite this