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Calorimeter for adsorption energies of larger molecules on single crystal surfaces

Title: Calorimeter for adsorption energies of larger molecules on single crystal surfaces
Authors: Ajo, Henry M.; Ihm, Hyeran; Moilanen, David E.; Campbell, Charles T.
Source: Review of Scientific Instruments ; volume 75, issue 11, page 4471-4480 ; ISSN 0034-6748 1089-7623
Publisher Information: AIP Publishing
Publication Year: 2004
Description: A calorimeter for measuring heats of adsorption of large molecules on single crystal surfaces is described. It extends previous instrumentation for single crystal adsorption calorimetry by adding the capability for measuring larger (lower vapor pressure) molecules. This is achieved using a chopped and collimated (∼4 mm diameter) molecular beam capable of stable 100 ms pulses of low vapor pressure substances, and a line-of-sight modification of the King and Wells method for measuring their sticking probabilities at the single crystal’s surface. The heat input to the single crystal due to adsorption is detected using a pyroelectric polymer ribbon pressed against the back of the single crystal, following our previous calorimeter design. Measurements of benzene adsorption on Pt(111) prove the capability to produce a highly stable beam of flux ∼2×1014 molecules/(cm2 s) and measure adsorption energies with an absolute accuracy of ∼5% and a pulse-to-pulse standard deviation of 2 kJ/mol.
Document Type: article in journal/newspaper
Language: English
DOI: 10.1063/1.1794391
Availability: https://doi.org/10.1063/1.1794391; https://pubs.aip.org/aip/rsi/article-pdf/75/11/4471/19144524/4471_1_online.pdf
Accession Number: edsbas.A62116D0
Database: BASE