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Archive | 2015

Multiscale Modelling of In Situ Oil Sands Upgrading with Molybdenum Carbide Nanoparticles

Xingchen Liu; Baojing Zhou; Farouq Ahmed; Alexander J. Tkalych; Akira Miyamoto; Dennis R. Salahub

This chapter presents multi-scale models of the reactions that occur in the in situ oil sands upgrading process. Its focus is on the various modelling tools and their applications to the benzene hydrogenation reactions catalyzed by molybdenum carbide nanoparticles. As the reaction mechanism of benzene hydrogenation on molybdenum carbide is not clear, we start with density functional theory (DFT) studies to elucidate the reaction mechanism, using both periodic and cluster models. Benzene hydrogenation on molybdenum carbide follows the Langmuir-Hinshelwood mechanism, with the six-member ring tilting up gradually. A tight-binding quantum chemical molecular dynamics (TB-QCMD) method is used to track the physical motion of the atoms in the reaction processes of C6H6 on a Mo-terminated α-Mo2C (0001) surface. The approximate DFT method, density functional tight-binding (DFTB), was parameterized to allow the quantum mechanical treatment of nanoscale systems. With the nudged elastic band method, the potential energy profiles of benzene hydrogenation on molybdenum carbide nanoparticles have been obtained. Finally a force field was brought in to describe the solvent environment in the system, leading to a multiscale quantum mechanical/molecular mechanical (QM/MM) model. This study suggests that entropy and the environment play important roles in heterogeneous reactions catalyzed by molybdenum carbide nanoparticles.


Journal of Physical Chemistry C | 2009

Dynamics of Hydrogen Spillover on Pt/γ-Al2O3 Catalyst Surface: A Quantum Chemical Molecular Dynamics Study

Farouq Ahmed; Md. Khorshed Alam; Ai Suzuki; Michihisa Koyama; Hideyuki Tsuboi; Nozomu Hatakeyama; Akira Endou; Hiromitsu Takaba; Carlos A. Del Carpio; Momoji Kubo; Akira Miyamoto


Journal of Physical Chemistry C | 2009

Study of Carbon Monoxide Oxidation on CeO2(111) Using Ultra Accelerated Quantum Chemical Molecular Dynamics

Md. Khorshed Alam; Farouq Ahmed; Katsuyoshi Nakamura; Ai Suzuki; Riadh Sahnoun; Hideyuki Tsuboi; Michihisa Koyama; Nozomu Hatakeyama; Akira Endou; Hiromitsu Takaba; Carlos A. Del Carpio; Momoji Kubo; Akira Miyamoto


Applied Surface Science | 2010

Adsorption and dissociation of molecular hydrogen on Pt/CeO2 catalyst in the hydrogen spillover process: A quantum chemical molecular dynamics study

Farouq Ahmed; Md. Khorshed Alam; Ryuji Muira; Ai Suzuki; Hideyuki Tsuboi; Nozomu Hatakeyama; Akira Endou; Hiromitsu Takaba; Momoji Kubo; Akira Miyamoto


Journal of Physical Chemistry C | 2011

CO Oxidation and NO Reduction on a MgO(100) Supported Pd Cluster: A Quantum Chemical Molecular Dynamics Study

Farouq Ahmed; Ryo Nagumo; Ryuji Miura; Ai Suzuki; Hideyuki Tsuboi; Nozomu Hatakeyama; Hiromitsu Takaba; Akira Miyamoto


Catalysis Today | 2011

Modeling of hydrogen vacancy for dissociative adsorption of H2 on Pd (1 1 1) surface by a quantum chemical molecular dynamics

Farouq Ahmed; Md. Khorshed Alam; Ryuji Miura; Ai Suzuki; Hideyuki Tsuboi; Nozomu Hatakeyama; Akira Endou; Hiromitsu Takaba; Momoji Kubo; Akira Miyamoto


Catalysis Today | 2011

Surface reduction processes of cerium oxide surfaces by H2 using ultra accelerated quantum chemical molecular dynamic study

Md. Korshed Alam; Farouq Ahmed; Ryuji Miura; Ai Suzuki; Hideyuki Tsuboi; Nozomu Hatakeyama; Akira Endou; Hiromitsu Takaba; Momoji Kubo; Akira Miyamoto


Applied Surface Science | 2010

Study of reduction processes over cerium oxide surfaces with atomic hydrogen using ultra accelerated quantum chemical molecular dynamics

Md. Khorshed Alam; Farouq Ahmed; Ryuji Miura; Ai Suzuki; Hideyuki Tsuboi; Nozomu Hatakeyama; Akira Endou; Hiromitsu Takaba; Momoji Kubo; Akira Miyamoto


Journal of Physical Chemistry C | 2013

Quantum Chemical Molecular Dynamics Study of the Water–Gas Shift Reaction on a Pd/MgO(100) Catalyst Surface

Farouq Ahmed; Ryuji Miura; Nozomu Hatakeyama; Hiromitsu Takaba; Akira Miyamoto; Dennis R. Salahub


Catalysis Today | 2016

Corrigendum to “Surface reduction processes of cerium oxide surfaces by H2 using ultra accelerated quantum chemical molecular dynamic study” [Catal. Today 164 (1) (2011) 9–15]

Md. Korshed Alam; Farouq Ahmed; Ryuji Miura; Ai Suzuki; Hideyuki Tsuboi; Nozomu Hatakeyama; Akira Endou; Hiromitsu Takaba; Momoji Kubo; Akira Miyamoto

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