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The electronic structure of SrBi2Ta2O9 is investigated from first-principles, within the local density approximation, using the full-potential linearized augmented plane wave (LAPW) method. The results show that, besides the large…

Materials Science · Physics 2009-10-31 M. G. Stachiotti , C. O. Rodriguez , C. Ambrosch-Draxl , N. E. Christensen

We use a combination of symmetry arguments and first-principles calculations to explore the connection between structural distortions and ferroelectricity in the perovskite family of materials. We explain the role of octahedral rotations in…

Materials Science · Physics 2013-08-01 Nicole A. Benedek , Craig J. Fennie

Metal halide perovskites (MHPs) combine extraordinary optoelectronic properties with chemical and mechanical properties not found in their semiconductor counterparts. For instance, they exhibit optoelectronic properties on par with…

Applied Physics · Physics 2023-04-20 Bryan A. Rosales , Kelly Schutt , Joseph J. Berry , Lance M. Wheeler

PbTiO3 has the highest tetragonal distortion (c/a=1.064) and highest spontaneous polarization among perovskite titanates. But, it is hazardous and hence one needs to reduce Pb content by substituting or reducing Pb content for use in…

Wurtzite-type nitrides have recently emerged as promising candidates for ferroelectric applications, yet their magnetic counterparts remain largely unexplored. Here, we establish MnSiN$_2$ and MnGeN$_2$ as aristotypes of a new multiferroic…

Materials Science · Physics 2025-09-09 Steven M. Baksa , Lin-Ding Yuan , Stephen D. Wilson , James M. Rondinelli

We study a newly predicted layered-ternary compound Ti4SiN3 in its {\alpha}- and {\beta}-phases. We calculate their mechanical, electronic and optical properties and then compare these with those of other compounds M4AX3 (M = V, Ti, Ta; A =…

Materials Science · Physics 2011-08-03 M. M. Hossain , M. S. Ali , A. K. M. A. Islam

Discovering materials that display a linear magnetoelectric effect at room temperature is challenge. Such materials could facilitate novel devices based on the electric-field control of magnetism. Here we present simple, chemically…

Materials Science · Physics 2015-12-09 Saurabh Ghosh , Hena Das , Craig J. Fennie

Antiperovskite (APV) nitrides exhibit a diverse range of electronic properties, including superconductivity, magnetic effects, and nontrivial topological behaviors. In this study, we propose a new family of APV nitrides by incorporating…

Materials Science · Physics 2025-11-04 Shuxiang Zhou , Kevin Vallejo , Krzysztof Gofryk

Transparent conducting oxides (TCOs) and transparent oxide semiconductors (TOSs) have become necessary materials for a variety of applications in the information and energy technologies, ranging from transparent electrodes to active…

Using first-principles density functional theory, we study piezoelectricity in short-period superlattices made with combination of ferroelectric and paraelectric components and exhibiting polar discontinuities. We show that piezoelectric…

Computational Physics · Physics 2015-05-19 Hena Das , Umesh V. Waghmare , T. Saha-Dasgupta

Transition metal oxides are promising candidates for thermoelectric applications, because they are stable at high temperature and because strong electronic correlations can generate large Seebeck coefficients, but their thermoelectric power…

Strongly Correlated Electrons · Physics 2017-06-29 P. Yordanov , P. Wochner , S. Ibrahimkutty , C. Dietl , F. Wrobel , R. Felici , G. Gregori , J. Maier , B. Keimer , H. -U. Habermeier

Amorphous materials offer unique functional characteristics, which are often not observed in their crystalline counterparts. This makes them invaluable for many technological applications, such as diffusion barriers in semiconductor…

Materials Science · Physics 2024-12-03 O. V. Pshyk , S. Zhuk , J. Patidar , A. Wieczorek , A. Sharma , J. Michler , C. Cancellieri , V. Stevanovic , S. Siol

Organic or inorganic (A) metal (M) halide (X) perovskites (AMX3) are semiconductor materials setting the basis for the development of highly efficient, low-cost and multijunction solar energy conversion devices. The best efficiencies…

Materials Science · Physics 2018-10-17 Frederike Lehmann , Silvia Binet , Alexandra Franz , Andreas Taubert , Susan Schorr

Designing and understanding functional electronic and magnetic properties in perovskite oxides requires controlling and tuning the underlying crystal lattice. Here we report the structure, including oxygen and cation positions, of a…

Chalcogenide perovskites have received considerable interest in photovoltaic research community owing to their stability (thermal and aqueous), non-toxicity and lead free composition. However, to date a theoretical study mainly focusing on…

Materials Science · Physics 2022-07-13 Pooja Basera , Saswata Bhattacharya

The observation of low energy edge photoluminescence and its beneficial effect on the solar cell efficiency of Ruddlesden-Popper perovskites has unleashed an intensive research effort to reveal its origin. This effort, however, has been met…

Lead-free iodide double perovskites are an interesting class of materials since they combine a relatively low toxicity (compared to the lead counterpart) with the small bandgap typical of iodide-based perovskite structures. Their reported…

A set of symmetric and asymmetric superlattices with ferromagnetic La0.6Sr0.4MnO3 and ferroelectric 0.7Pb(Mg0.33Nb0.67)O3 0.3(PbTiO3) as the constituting layers were fabricated on LaNiO3 coated (100) oriented LaAlO3 substrates using pulsed…

Methylammonium lead iodide perovskite has attracted intensive interest for its diverse optoelectronic applications. However, most studies to date have been limited to bulk thin films that are difficult to implement for integrated device…

Transparent electronic materials are increasingly in demand for a variety of optoelectronic applications. BaSnO3 is a semiconducting oxide with a large band gap of more than 3.1 eV. Recently, we discovered that La doped BaSnO3 exhibits…