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Dive into the research topics where Ahmed O. Elnabawy is active.

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Featured researches published by Ahmed O. Elnabawy.


Nano Letters | 2016

Synthesis and Characterization of Ru Cubic Nanocages with a Face-Centered Cubic Structure by Templating with Pd Nanocubes

Ming Zhao; Legna Figueroa-Cosme; Ahmed O. Elnabawy; Madeline Vara; Xuan Yang; Luke T. Roling; Miaofang Chi; Manos Mavrikakis; Younan Xia

Nanocages have received considerable attention in recent years for catalytic applications owing to their high utilization efficiency of atoms and well-defined facets. Here we report, for the first time, the synthesis of Ru cubic nanocages with ultrathin walls, in which the atoms are crystallized in a face-centered cubic (fcc) rather than hexagonal close-packed (hcp) structure. The key to the success of this synthesis is to ensure layer-by-layer deposition of Ru atoms on the surface of Pd cubic seeds by controlling the reaction temperature and the injection rate of a Ru(III) precursor. By selectively etching away the Pd from the Pd@Ru core-shell nanocubes, we obtain Ru nanocages with an average wall thickness of 1.1 nm or about six atomic layers. Most importantly, the Ru nanocages adopt an fcc crystal structure rather than the hcp structure observed in bulk Ru. The synthesis has been successfully applied to Pd cubic seeds with different edge lengths in the range of 6-18 nm, with smaller seeds being more favorable for the formation of Ru shells with a flat, smooth surface due to shorter distance for the surface diffusion of the Ru adatoms. Self-consistent density functional theory calculations indicate that these unique fcc-structured Ru nanocages might possess promising catalytic properties for ammonia synthesis compared to hcp Ru(0001), on the basis of strengthened binding of atomic N and substantially reduced activation energies for N2 dissociation, which is the rate-determining step for ammonia synthesis on hcp Ru catalysts.


Journal of Advanced Research | 2013

Semi-empirical correlation for binary interaction parameters of the Peng–Robinson equation of state with the van der Waals mixing rules for the prediction of high-pressure vapor–liquid equilibrium

Seif-Eddeen K. Fateen; Menna M. Khalil; Ahmed O. Elnabawy

Peng–Robinson equation of state is widely used with the classical van der Waals mixing rules to predict vapor liquid equilibria for systems containing hydrocarbons and related compounds. This model requires good values of the binary interaction parameter kij. In this work, we developed a semi-empirical correlation for kij partly based on the Huron–Vidal mixing rules. We obtained values for the adjustable parameters of the developed formula for over 60 binary systems and over 10 categories of components. The predictions of the new equation system were slightly better than the constant-kij model in most cases, except for 10 systems whose predictions were considerably improved with the new correlation.


Nano Letters | 2017

Thermal Stability of Metal Nanocrystals: An Investigation of the Surface and Bulk Reconstructions of Pd Concave Icosahedra

Kyle D. Gilroy; Ahmed O. Elnabawy; Tung Han Yang; Luke T. Roling; Jane Y. Howe; Manos Mavrikakis; Younan Xia

Despite the remarkable success in controlling the synthesis of metal nanocrystals, it still remains a grand challenge to stabilize and preserve the shapes or internal structures of metastable kinetic products. In this work, we address this issue by systematically investigating the surface and bulk reconstructions experienced by a Pd concave icosahedron when subjected to heating up to 600 °C in vacuum. We used in situ high-resolution transmission electron microscopy to identify the equilibration pathways of this far-from-equilibrium structure. We were able to capture key structural transformations occurring during the thermal annealing process, which were mechanistically rationalized by implementing self-consistent plane-wave density functional theory (DFT) calculations. Specifically, the concave icosahedron was found to evolve into a regular icosahedron via surface reconstruction in the range of 200-400 °C, and then transform into a pseudospherical crystalline structure through bulk reconstruction when further heated to 600 °C. The mechanistic understanding may lead to the development of strategies for enhancing the thermal stability of metal nanocrystals.


ACS Nano | 2017

Understanding the Thermal Stability of Palladium–Platinum Core–Shell Nanocrystals by In Situ Transmission Electron Microscopy and Density Functional Theory

Madeline Vara; Luke T. Roling; Xue Wang; Ahmed O. Elnabawy; Zachary D. Hood; Miaofang Chi; Manos Mavrikakis; Younan Xia

Core-shell nanocrystals offer many advantages for heterogeneous catalysis, including precise control over both the surface structure and composition, as well as reduction in loading for rare and costly metals. Although many catalytic processes are operated at elevated temperatures, the adverse impacts of heating on the shape and structure of core-shell nanocrystals are yet to be understood. In this work, we used ex situ heating experiments to demonstrate that Pd@Pt4L core-shell nanoscale cubes and octahedra are promising for catalytic applications at temperatures up to 400 °C. We also used in situ transmission electron microscopy to monitor the thermal stability of the core-shell nanocrystals in real time. Our results demonstrate a facet dependence for the thermal stability in terms of shape and composition. Specifically, the cubes enclosed by {100} facets readily deform shape at a temperature 300 °C lower than that of the octahedral counterparts enclosed by {111} facets. A reversed trend is observed for composition, as alloying between the Pd core and the Pt shell of an octahedron occurs at a temperature 200 °C lower than that for the cubic counterpart. Density functional theory calculations provide atomic-level explanations for the experimentally observed behaviors, demonstrating that the barriers for edge reconstruction determine the relative ease of shape deformation for cubes compared to octahedra. The opposite trend for alloying of the core-shell structure can be attributed to a higher propensity for subsurface Pt vacancy formation in octahedra than in cubes.


Nano Letters | 2016

Synthesis and Characterization of Pt–Ag Alloy Nanocages with Enhanced Activity and Durability toward Oxygen Reduction

Xuan Yang; Luke T. Roling; Madeline Vara; Ahmed O. Elnabawy; Ming Zhao; Zachary D. Hood; Shixiong Bao; Manos Mavrikakis; Younan Xia


Chemistry of Materials | 2017

Facile Synthesis of Ru-Based Octahedral Nanocages with Ultrathin Walls in a Face-Centered Cubic Structure

Ming Zhao; Ahmed O. Elnabawy; Madeline Vara; Lang Xu; Zachary D. Hood; Xuan Yang; Kyle D. Gilroy; Legna Figueroa-Cosme; Miaofang Chi; Manos Mavrikakis; Younan Xia


Industrial & Engineering Chemistry Research | 2014

Phase stability analysis and phase equilibrium calculations in reactive and non-reactive systems using Charged System Search algorithms

Ahmed O. Elnabawy; Seif-Eddeen K. Fateen; Adrian Bonilla-Petriciolet


Journal of Catalysis | 2015

Computational chemistry for NH3 synthesis, hydrotreating, and NOx reduction: Three topics of special interest to Haldor Topsøe

Ahmed O. Elnabawy; Srinivas Rangarajan; Manos Mavrikakis


ACS Catalysis | 2018

Synthesis of Ru Icosahedral Nanocages with a Face-Centered-Cubic Structure and Evaluation of Their Catalytic Properties

Ming Zhao; Lang Xu; Madeline Vara; Ahmed O. Elnabawy; Kyle D. Gilroy; Zachary D. Hood; Shan Zhou; Legna Figueroa-Cosme; Miaofang Chi; Manos Mavrikakis; Younan Xia


Journal of The Electrochemical Society | 2018

Structure Sensitivity of Formic Acid Electrooxidation on Transition Metal Surfaces: A First-Principles Study

Ahmed O. Elnabawy; Jeffrey A. Herron; Jessica Scaranto; Manos Mavrikakis

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Manos Mavrikakis

University of Wisconsin-Madison

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Madeline Vara

Georgia Institute of Technology

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Younan Xia

Washington University in St. Louis

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Luke T. Roling

University of Wisconsin-Madison

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Miaofang Chi

Oak Ridge National Laboratory

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Ming Zhao

Georgia Institute of Technology

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Zachary D. Hood

Georgia Institute of Technology

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Legna Figueroa-Cosme

Georgia Institute of Technology

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Lang Xu

University of Wisconsin-Madison

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