Pore size distribution in microporous carbons obtained from molecular modeling and density functional theory
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Publisher
Elsevier
Reference11 articles.
1. Comparative analysis of simple and advanced sorption methods for assessment of microporosity in activated carbons
2. Estimation of the pore-size distribution function from the nitrogen adsorption isotherm. Comparison of density functional theory and the method of Do and co-workers
3. Estimating the pore size distribution of activated carbons from adsorption data of different adsorbates by various methods
4. Improving the models used for calculating the size distribution of micropore volume of activated carbons from adsorption data
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1. Application of the modified Dubinin-Astakhov equation for a better understanding of high-pressure hydrogen adsorption on activated carbons;International Journal of Hydrogen Energy;2020-09
2. Characterization of Carbon Materials for Hydrogen Storage and Compression;C — Journal of Carbon Research;2020-07-09
3. A 70 MPa hydrogen thermally driven compressor based on cyclic adsorption-desorption on activated carbon;Carbon;2020-05
4. Hydrogen Adsorption on Nanotextured Carbon Materials;Hydrogen Storage Technologies;2018-08-06
5. Pore size distributions derived from adsorption isotherms, immersion calorimetry, and isosteric heats: A comparative study;Carbon;2016-01
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