Adsorption and double layer charging in molecular sieve carbons in relation to molecular dimensions and pore structures
Description
The pore structure of a fibrous carbon molecular sieve was studied by adsorption of molecular probes. Mild activation steps enabled the graduated opening of critical pore dimensions in the range 3.1-5.0 A, which keeps adsorption selectivity between molecules differing by 0.2 A in cross section diameter, to be considerably greater than 100/1. High adsorption stereospecificity over a wide pore dimension range enabled the studied adsorbates to be ordered in a sequence of increasing critical molecular dimension. Estimation of molecular dimensions by various experimental methods was discussed and their relevance to nonspherical molecules was evaluated. Polar molecules assume different dimensions depending on whether the carbon surface was polar (oxidized) or not. Hydrogen acquires, surprisingly, large width in accordance with its high liquid molar volume. Adsorbent-adsorbate interactions play a crucial role in determining molecular dimensions. Adsorption of ions from aqueous solutions into the developed ultramicropores of fibrous carbon electrodes was also studied. The dependence of the double layer capacitance and the charging rate on the pore critical dimension and on surface oxidation was studied using linear potential sweep voltametry. (Author)
Availability note (English)
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14730988.pdf
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Additional details
Publishing Information
- Imprint Pagination
- 133 p.
- Report number
- NRCN--485
INIS
- Country of Publication
- Israel
- Country of Input or Organization
- Israel
- INIS RN
- 14730988
- Subject category
- S37: INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY;
- Resource subtype / Literary indicator
- Numerical Data, Thesis
- Descriptors DEI
- ACETYLENE; ADSORPTION; ARGON; CARBON; CARBON OXIDES; CHEMICAL REACTION KINETICS; ELECTROCHEMISTRY; EXPERIMENTAL DATA; FILTRATION; HYDROGEN; MOLECULAR SIEVES; NITROGEN; OXYGEN; POROSITY
- Descriptors DEC
- ADSORBENTS; ALKYNES; CARBON COMPOUNDS; CHALCOGENIDES; DATA; ELEMENTS; HYDROCARBONS; INFORMATION; KINETICS; NONMETALS; NUMERICAL DATA; ORGANIC COMPOUNDS; OXIDES; OXYGEN COMPOUNDS; RARE GASES; REACTION KINETICS; SEPARATION PROCESSES