Los puntos clave no están disponibles para este artículo en este momento.
The design of an ultrahigh vacuum microcalorimeter enabling calorimetric heats of adsorption to be obtained on single crystal surfaces as a detailed function of coverage is discussed. The system comprises a pulsed supersonic molecular beam source, an ultrathin metal single crystal, and remote infrared temperature sensing. Sticking probabilities and coverages are determined pulsewise by the King and Wells method, and heat capacity calibrations are conducted in situ by laser beam pulsing. Results for CO and O2 on Ni110 demonstrate excellent sensitivity to adsorption of ∼10−13 moles of gas (∼0. 01 monolayer). The heat capacity of the calorimeter is 4. 2 μJ K−1.
Borroni-Bird et al. (Sun,) studied this question.