4.6 Article

ReaxFF Reactive Molecular Dynamics Simulation of the Hydration of Cu-SSZ-13 Zeolite and the Formation of Cu Dimers

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JOURNAL OF PHYSICAL CHEMISTRY C
卷 119, 期 12, 页码 6678-6686

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AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.5b00699

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  1. NETL through the RES Contract [DE-FE00400]
  2. Pennsylvania State University Altoona

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A new Cu/Si/Al/O/H reactive ReaxFF force field was developed and used in molecular dynamics simulations of the hydration of Cu-exchanged SSZ-13 catalyst. It was observed that at temperatures close to room temperature, all Cu cations, including those at the faces of the double 6-member rings (6MRs), become fully hydrated and detach from the framework The hydrated Cu:cations can diffuse through the Cu-SSZ-13 zeolite pore windows. At higher temperatures, the formation of cationic OH-bridged Cu dimers Cu2OH and Cu-2(OH)(2) within the cages was observed. The simulations show that the temperature at which these species are formed is lower for zeolites that stabilize [CuOH](+) ions, as would be expected for relatively high-Cu and low-Al-content zeolites. The stable dimers bind preferentially to 8MRs beside the large cages in a Configuration that blocks the openings of the pores. The consequences of the present results for selective catalytic reduction and NO oxidation catalysis in Cu-SSZ-13 are discussed.

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