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Dive into the research topics where Armagan Kinal is active.

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Featured researches published by Armagan Kinal.


Journal of Physical Chemistry A | 2008

Stereoelectronic Effects on Molecular Geometries and State-Energy Splittings of Ligated Monocopper Dioxygen Complexes

Christopher J. Cramer; Jeffrey R. Gour; Armagan Kinal; Marta Włoch; Piotr Piecuch; and Abdul Rehaman Moughal Shahi; Laura Gagliardi

The relative energies of side-on versus end-on binding of molecular oxygen to a supported Cu(I) species, and the singlet versus triplet nature of the ground electronic state, are sensitive to the nature of the supporting ligands and, in particular, depend upon their geometric arrangement relative to the O2 binding site. Highly correlated ab initio and density functional theory electronic structure calculations demonstrate that optimal overlap (and oxidative charge transfer) occurs for the side-on geometry, and this is promoted by ligands that raise the energy, thereby enhancing resonance, of the filled Cu dxz orbital that hybridizes with the in-plane pi* orbital of O2. Conversely, ligands that raise the energy of the filled Cu dz2 orbital foster a preference for end-on binding as this is the only mode that permits good overlap with the in-plane O2 pi*. Because the overlap of Cu dz2 with O2 pi* is reduced as compared to the overlap of Cu dxz with the same O2 orbital, the resonance is also reduced, leading to generally more stable triplet states relative to singlets in the end-on geometry as compared to the side-on geometry, where singlet ground states become more easily accessible once ligands are stronger donors. Biradical Cu(II)-O2 superoxide character in the electronic structure of the supported complexes leads to significant challenges for accurate quantum chemical calculations that are best addressed by exploiting the spin-purified M06L local density functional, single-reference completely renormalized coupled-cluster theory, or multireference second-order perturbation theory, all of which provide predictions that are qualitatively and quantitatively consistent with one another.


Chemical Physics Letters | 2006

Single-reference, size-extensive, non-iterative coupled-cluster approaches to bond breaking and biradicals

Piotr Piecuch; Marta Włoch; Jeffrey R. Gour; Armagan Kinal


Journal of Physical Chemistry A | 2006

Theoretical Characterization of End-On and Side-On Peroxide Coordination in Ligated Cu2O2 Models

Christopher J. Cramer; Armagan Kinal; Marta Włoch; Piotr Piecuch; Laura Gagliardi


Journal of Organic Chemistry | 2004

Competing pathways in the [2 + 2] cycloadditions of cyclopentyne and benzyne. A DFT and ab initio study

İlker Özkan; Armagan Kinal


Journal of Molecular Structure-theochem | 2010

A DFT and TD-DFT study on intermolecular charge transfer complexes of pyrene with phenothiazine and promazine

Armagan Kinal; Nursel Acar


Journal of Molecular Structure-theochem | 2008

A comparison of single-reference coupled-cluster and multi-reference configuration interaction methods for representative cuts of the H2S(1A') potential energy surface

Y.Z. Song; Armagan Kinal; P.J.S.B. Caridade; A. J. C. Varandas; Piotr Piecuch


International Journal of Hydrogen Energy | 2016

Accurate prediction of hydrogen storage capacity of small boron nitride nanocages by dispersion corrected semi-empirical PM6-DH2 method

Armagan Kinal; Sinan Sayhan


Computational and Theoretical Chemistry | 2016

A DFT and TDDFT investigation of interactions between pyrene and amino acids with cyclic side chains

Nursel Acar; Armagan Kinal; Nilgün Yener; Arzu Yavaş; Pınar Güloğlu


Computational and Theoretical Chemistry | 2018

Computational determination of ring opening polymerization reaction mechanism of α-angelica lactone

Sıla Gümüştaş; Mehmet Balcan; Armagan Kinal


International Journal of Hydrogen Energy | 2017

Computational investigation and comparison of hydrogen storage properties of B24N24 and Al24N24 nanocages

Sinan Sayhan; Armagan Kinal

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Piotr Piecuch

Michigan State University

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Marta Włoch

Michigan State University

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Jeffrey R. Gour

Michigan State University

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H. O. Pamuk

Middle East Technical University

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