TY - JOUR
T1 - Theoretical study on the leaching of palladium in a CO atmosphere
AU - Chang, Chun Ran
AU - Zhao, Zhi Jian
AU - Köhler, Klaus
AU - Genest, Alexander
AU - Li, Jun
AU - Rösch, Notker
PY - 2012/11
Y1 - 2012/11
N2 - We studied computationally the leaching of palladium from the ideal surface Pd(111) and its various structural defects at different coverages of CO, using density functional calculations on slab models. Accordingly, the energy required for leaching of a single Pd atom from a bare surface is quite large, at least ∼270 kJ mol-1. In a CO atmosphere at low density, PdCO is predicted to be the leaching species; this process was calculated to require at least 225 kJ mol-1, somewhat less than the leaching of a bare metal adatom, 268 kJ mol-1. The energies required for either leaching process (at low CO density), yielding single Pd atoms or PdCO subcarbonyl, correlate in a linear fashion with the coordination number of the Pd center to be leached. At high CO coverage, leaching of Pd subcarbonyl species, Pd(CO) x (x = 2, 3), was calculated to be thermodynamically favorable in several cases, providing direct theoretical evidence for the feasibility of Pd leaching in a dense CO atmosphere. In a qualitative fashion, we also explored possible leaching mechanisms, comprising one or two steps.
AB - We studied computationally the leaching of palladium from the ideal surface Pd(111) and its various structural defects at different coverages of CO, using density functional calculations on slab models. Accordingly, the energy required for leaching of a single Pd atom from a bare surface is quite large, at least ∼270 kJ mol-1. In a CO atmosphere at low density, PdCO is predicted to be the leaching species; this process was calculated to require at least 225 kJ mol-1, somewhat less than the leaching of a bare metal adatom, 268 kJ mol-1. The energies required for either leaching process (at low CO density), yielding single Pd atoms or PdCO subcarbonyl, correlate in a linear fashion with the coordination number of the Pd center to be leached. At high CO coverage, leaching of Pd subcarbonyl species, Pd(CO) x (x = 2, 3), was calculated to be thermodynamically favorable in several cases, providing direct theoretical evidence for the feasibility of Pd leaching in a dense CO atmosphere. In a qualitative fashion, we also explored possible leaching mechanisms, comprising one or two steps.
UR - http://www.scopus.com/inward/record.url?scp=84867347862&partnerID=8YFLogxK
U2 - 10.1039/c2cy20441j
DO - 10.1039/c2cy20441j
M3 - Article
AN - SCOPUS:84867347862
SN - 2044-4753
VL - 2
SP - 2238
EP - 2248
JO - Catalysis Science and Technology
JF - Catalysis Science and Technology
IS - 11
ER -