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Dive into the research topics where Constantinos D. Zeinalipour-Yazdi is active.

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Featured researches published by Constantinos D. Zeinalipour-Yazdi.


Journal of Molecular Modeling | 2016

The sphere-in-contact model of carbon materials

Constantinos D. Zeinalipour-Yazdi; David P. Pullman; C. Richard A. Catlow

AbstractA sphere-in-contact model is presented that is used to build physical models of carbon materials such as graphite, graphene, carbon nanotubes and fullerene. Unlike other molecular models, these models have correct scale and proportions because the carbon atoms are represented by their atomic radius, in contrast to the more commonly used space-fill models, where carbon atoms are represented by their van der Waals radii. Based on a survey taken among 65 undergraduate chemistry students and 28 PhD/postdoctoral students with a background in molecular modeling, we found misconceptions arising from incorrect visualization of the size and location of the electron density located in carbon materials. Based on analysis of the survey and on a conceptual basis we show that the sphere-in-contact model provides an improved molecular representation of the electron density of carbon materials compared to other molecular models commonly used in science textbooks (i.e., wire-frame, ball-and-stick, space-fill). We therefore suggest that its use in chemistry textbooks along with the ball-and-stick model would significantly enhance the visualization of molecular structures according to their electron density.n Graphical AbstractA sphere-in-contact model of C60-fullerene


Catalysis Letters | 2017

A Computational Study of the Heterogeneous Synthesis of Hydrazine on Co3Mo3N

Constantinos D. Zeinalipour-Yazdi; C. Richard A. Catlow

Periodic and molecular density functional theory calculations have been applied to elucidate the associative mechanism for hydrazine and ammonia synthesis in the gas phase and hydrazine formation on Co3Mo3N. We find that there are two activation barriers for the associative gas phase mechanism with barriers of 730 and 658xa0kJ/mol, corresponding to a hydrogenation step from N2 to NNH2 and H2NNH2 to H3NNH3, respectively. The second step of the mechanism is barrierless and an important intermediate, NNH2, can also readily form on Co3Mo3N surfaces via the Eley–Rideal chemisorption of H2 on a pre-adsorbed N2 at nitrogen vacancies. Based on this intermediate a new heterogeneous mechanism for hydrazine synthesis is studied. The highest relative barrier for this heterogeneous catalysed process is 213xa0kJ/mol for Co3Mo3N containing nitrogen vacancies, clearly pointing towards a low-energy process for the synthesis of hydrazine via a heterogeneous catalysis route.Graphical Abstract


Surface Science | 2016

CO adsorption over Pd nanoparticles: A general framework for IR simulations on nanoparticles

Constantinos D. Zeinalipour-Yazdi; David J. Willock; Liam Thomas; Karen Wilson; Adam F. Lee


Applied Catalysis B-environmental | 2018

The potential of manganese nitride based materials as nitrogen transfer reagents for nitrogen chemical looping

Said Laassiri; Constantinos D. Zeinalipour-Yazdi; C. Richard A. Catlow; Justin S. J. Hargreaves


Catalysis Today | 2017

Nitrogen transfer properties in tantalum nitride based materials

Said Laassiri; Constantinos D. Zeinalipour-Yazdi; C. Richard A. Catlow; Justin S. J. Hargreaves


Carbon | 2017

Study of the cap structure of (3,3), (4,4) and (5,5)-SWCNTs: Application of the sphere-in-contact model

Constantinos D. Zeinalipour-Yazdi; Eriketi Z. Loizidou


Physical Chemistry Chemical Physics | 2017

DFT-D3 study of H2 and N2 chemisorption over cobalt promoted Ta3N5-(100), (010) and (001) surfaces

Constantinos D. Zeinalipour-Yazdi; Justin S. J. Hargreaves; Said Laassiri; C. Richard A. Catlow


Surface Science | 2017

DFT study of the coverage-dependent chemisorption of molecular H2 on neutral cobalt dimers

Constantinos D. Zeinalipour-Yazdi


Physical Chemistry Chemical Physics | 2018

On the possibility of an Eley–Rideal mechanism for ammonia synthesis on Mn6N5+x (x = 1)-(111) surfaces

Constantinos D. Zeinalipour-Yazdi


Physical Chemistry Chemical Physics | 2018

The integration of experiment and computational modelling in heterogeneously catalysed ammonia synthesis over metal nitrides

Constantinos D. Zeinalipour-Yazdi; Justin S. J. Hargreaves; Said Laassiri; Richard Catlow

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Richard Catlow

University College London

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David P. Pullman

San Diego State University

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