Motivated by the suggestion that mainly geometric arguments can explain the observed structure sensitivity in the cyclotrimerization of acetylene to benzene on palladium single crystals and on supported palladium particles, we studied this reaction on size-selected Pd-n clusters (1 less than or equal to n less than or equal to 30) supported on thin MgO (100) films by thermal desorption spectroscopy. Already on small Pd-n (1 less than or equal to n less than or equal to 6), benzene is readily produced, mainly at low temperature (300 K). For larger clusters (7 less than or equal to n less than or equal to 30) benzene also desorbs at a temperature of 430 K, indicating that a critical ensemble of seven atoms is necessary for high-temperature cyclotrimerization. Using density functional theory, we attribute this high-temperature desorption of benzene to the presence of three-dimensional clusters. (C) 2000 Elsevier Science B.V. All rights reserved.
Abbet, S., Sanchez, A., Heiz, U., Schneider, W., Ferrari, A., Pacchioni, G., et al. (2000). Size-effects in the acetylene cyclotrimerization on supported size-selected Pdn clusters (1≤n≤30). SURFACE SCIENCE, 454(1), 984-989 [10.1016/S0039-6028(00)00083-2].
Size-effects in the acetylene cyclotrimerization on supported size-selected Pdn clusters (1≤n≤30)
PACCHIONI, GIANFRANCO;
2000
Abstract
Motivated by the suggestion that mainly geometric arguments can explain the observed structure sensitivity in the cyclotrimerization of acetylene to benzene on palladium single crystals and on supported palladium particles, we studied this reaction on size-selected Pd-n clusters (1 less than or equal to n less than or equal to 30) supported on thin MgO (100) films by thermal desorption spectroscopy. Already on small Pd-n (1 less than or equal to n less than or equal to 6), benzene is readily produced, mainly at low temperature (300 K). For larger clusters (7 less than or equal to n less than or equal to 30) benzene also desorbs at a temperature of 430 K, indicating that a critical ensemble of seven atoms is necessary for high-temperature cyclotrimerization. Using density functional theory, we attribute this high-temperature desorption of benzene to the presence of three-dimensional clusters. (C) 2000 Elsevier Science B.V. All rights reserved.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.