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Dive into the research topics where Luis Basurto is active.

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Featured researches published by Luis Basurto.


Journal of Chemical Physics | 2016

Self-interaction corrections applied to Mg-porphyrin, C60, and pentacene molecules.

Mark R. Pederson; Tunna Baruah; Der You Kao; Luis Basurto

We have applied a recently developed method to incorporate the self-interaction correction through Fermi orbitals to Mg-porphyrin, C60, and pentacene molecules. The Fermi-Löwdin orbitals are localized and unitarily invariant to the Kohn-Sham orbitals from which they are constructed. The self-interaction-corrected energy is obtained variationally leading to an optimum set of Fermi-Löwdin orbitals (orthonormalized Fermi orbitals) that gives the minimum energy. A Fermi orbital, by definition, is dependent on a certain point which is referred to as the descriptor position. The degree to which the initial choice of descriptor positions influences the variational approach to the minimum and the complexity of the energy landscape as a function of Fermi-orbital descriptors is examined in detail for Mg-porphyrin. The applications presented here also demonstrate that the method can be applied to larger molecular systems containing a few hundred electrons. The atomization energy of the C60 molecule within the Fermi-Löwdin-orbital self-interaction-correction approach is significantly improved compared to local density approximation in the Perdew-Wang 92 functional and generalized gradient approximation of Perdew-Burke-Ernzerhof functionals. The eigenvalues of the highest occupied molecular orbitals show qualitative improvement.


Journal of Chemical Physics | 2015

Site specific atomic polarizabilities in endohedral fullerenes and carbon onions

Rajendra R. Zope; Shusil Bhusal; Luis Basurto; Tunna Baruah; Koblar A. Jackson

We investigate the polarizability of trimetallic nitride endohedral fullerenes by partitioning the total polarizability into site specific components. This analysis indicates that the polarizability of the endohedral fullerene is essentially due to the outer fullerene cage and has insignificant contribution from the encapsulated unit. Thus, the outer fullerene cages effectively shield the encapsulated clusters and behave like Faraday cages. The polarizability of endohedral fullerenes is slightly smaller than the polarizability of the corresponding bare carbon fullerenes. The application of the site specific polarizabilities to C60@C240 and C60@C180 onions shows that, compared to the polarizability of isolated C60 fullerene, the encapsulation of the C60 in C240 and C180 fullerenes reduces its polarizability by 75% and 83%, respectively. The differences in the polarizability of C60 in the two onions is a result of differences in the bonding (intershell electron transfer), fullerene shell relaxations, and intershell separations. The site specific analysis further shows that the outer atoms in a fullerene shell contribute most to the fullerene polarizability.


Journal of Chemical Physics | 2016

Density functional study of the electronic structure of dye-functionalized fullerenes and their model donor-acceptor complexes containing P3HT

Tunna Baruah; Amanda Garnica; Marina Paggen; Luis Basurto; Rajendra R. Zope

We study the electronic structure of C60 fullerenes functionalized with a thiophene-diketo-pyrrolopyrrole-thiophene based chromophore using density functional theory combined with large polarized basis sets. As the attached chromophore has electron donor character, the functionalization of the fullerene leads to a donor-acceptor (DA) system. We examine in detail the effect of the linker and the addition site on the electronic structure of the functionalized fullerenes. We further study the electronic structure of these DA complexes with a focus on the charge transfer excitations. Finally, we examine the interface of the functionalized fullerenes with the widely used poly(3-hexylthiophene-2,5-diyl) (P3HT) donor. Our results show that all functionalized fullerenes with an exception of the C60-pyrrolidine [6,6], where the pyrrolidine is attached at a [6,6] site, have larger electron affinities relative to the pristine C60 fullerene. We also estimate the quasi-particle gap, lowest charge transfer excitation energy, and the exciton binding energies of the functionalized fullerene-P3MT model systems. Results show that the exciton binding energies in these model complexes are slightly smaller compared to a similarly prepared phenyl-C61-butyric acid methyl ester (PCBM)-P3MT complex.


Journal of Chemical Physics | 2014

The effect of structural changes on charge transfer states in a light-harvesting carotenoid-diaryl-porphyrin-C60 molecular triad

Marco Olguin; Luis Basurto; Rajendra R. Zope; Tunna Baruah

We present a detailed study of charge transfer (CT) excited states for a large number of configurations in a light-harvesting Carotenoid-diaryl-Porphyrin-C60 (CPC60) molecular triad. The chain-like molecular triad undergoes photoinduced charge transfer process exhibiting a large excited state dipole moment, making it suitable for application to molecular-scale opto-electronic devices. An important consideration is that the structural flexibility of the CPC60 triad impacts its dynamics in solvents. Since experimentally measured dipole moments for the triad of ∼110 D and ∼160 D strongly indicate a range in structural variability in the excited state, studying the effect of structural changes on the CT excited state energetics furthers the understanding of its charge transfer states. We have calculated the variation in the lowest CT excited state energies by performing a scan of possible variation in the structure of the triad. Some of these configurations were generated by incrementally scanning a 360° torsional (dihedral) twist at the C60-porhyrin linkage and the porphyrin-carotenoid linkage. Additionally, five different CPC60 conformations were studied to determine the effect of pi-conjugation and particle-hole Coulombic attraction on the CT excitation energies. Our calculations show that configurational changes in the triad induces a variation of ∼0.6 eV in CT excited state energies in the gas-phase. The corresponding calculated excited state dipoles show a range of 47 D-188 D. The absorption spectra and density of states of these structures show little variation except for the structures where the porphyrin and aryl conjugation is changed.


Journal of Chemical Physics | 2018

Fermi-Löwdin orbital self-interaction correction to magnetic exchange couplings

Rajendra Joshi; Kai Trepte; Kushantha Withanage; Kamal Sharkas; Yoh Yamamoto; Luis Basurto; Rajendra R. Zope; Tunna Baruah; Koblar A. Jackson; Juan E. Peralta

We analyze the effect of removing self-interaction error on magnetic exchange couplings using the Fermi-Löwdin orbital self-interaction correction (FLOSIC) method in the framework of density functional theory (DFT). We compare magnetic exchange couplings obtained from self-interaction-free FLOSIC calculations with the local spin density approximation (LSDA) with several widely used DFT realizations and wave function based methods. To this end, we employ the linear H-He-H model system, six organic radical molecules, and [Cu2Cl6]2- as representatives of different types of magnetic interactions. We show that the simple self-interaction-free version of LSDA improves calculated couplings with respect to LSDA in all cases, even though the nature of the exchange interaction varies across the test set, and in most cases, it yields results comparable to modern hybrids and range-separated approximate functionals.


Physical Chemistry Chemical Physics | 2015

The electronic structure and charge transfer excited states of the endohedral trimetallic nitride C80 (Ih) fullerenes–Zn-tetraphenyl porphyrin dyads

Luis Basurto; Fatemeh Amerikheirabadi; Rajendra R. Zope; Tunna Baruah


Chemical Physics | 2016

Density functional investigation of the electronic structure and charge transfer excited states of a multichromophoric antenna

Luis Basurto; Rajendra R. Zope; Tunna Baruah


Bulletin of the American Physical Society | 2017

Endohedral fullerenes contaning transition-metal clusters

Shusil Bhusal; Luis Basurto; Rajendra R. Zope; Tunna Baruah


Bulletin of the American Physical Society | 2015

Electronic structure and charge transfer excitation energies of three endohedral fullerene- ZnTPP/ZnPc dyads

Fatemeh Amerikheirabadi; Luis Basurto; Rajendra R. Zope; Tunna Baruah


Bulletin of the American Physical Society | 2015

Dye attached fullerene and P3HT complexes

Amanda Garnica; Luis Basurto; Rajendra R. Zope; Tunna Baruah

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Tunna Baruah

University of Texas at El Paso

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Rajendra R. Zope

University of Texas at El Paso

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Fatemeh Amerikheirabadi

University of Texas at El Paso

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Marco Olguin

University of Texas at El Paso

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Amanda Garnica

University of Texas at El Paso

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Koblar A. Jackson

Central Michigan University

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Shusil Bhusal

University of Texas at El Paso

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Carlos Diaz

University of Texas at El Paso

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Der You Kao

George Washington University

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Juan E. Peralta

Central Michigan University

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