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Open AccessJournal ArticleDOI

Charge carrier mobility in hybrid halide perovskites.

TLDR
In this article, the authors investigated the charge transport properties of hybrid halide perovskites with a combination of density functional theory including van der Waals interaction and the Boltzmann theory for diffusive transport in the relaxation time approximation.
Abstract
The charge transport properties of hybrid halide perovskites are investigated with a combination of density functional theory including van der Waals interaction and the Boltzmann theory for diffusive transport in the relaxation time approximation. We find the mobility of electrons to be in the range 5–10 cm2V−1s−1 and that for holes within 1–5 cm2V−1s−1, where the variations depend on the crystal structure investigated and the level of doping. Such results, in good agreement with recent experiments, set the relaxation time to about 1 ps, which is the time-scale for the molecular rotation at room temperature. For the room temperature tetragonal phase we explore two possible orientations of the organic cations and find that the mobility has a significant asymmetry depending on the direction of the current with respect to the molecular axis. This is due mostly to the way the PbI3 octahedral symmetry is broken. Interestingly we find that substituting I with Cl has minor effects on the mobilities. Our analysis suggests that the carrier mobility is probably not a key factor in determining the high solar-harvesting efficiency of this class of materials.

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Charge-Carrier Mobilities in Metal Halide Perovskites: Fundamental Mechanisms and Limits

TL;DR: In this paper, the authors outline the mechanisms that set a fundamental upper limit to charge-carrier mobility values in metal halide perovskites and reveal how they may be tuned through changes in stoichiometry.
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Organic Lasers: Recent Developments on Materials, Device Geometries, and Fabrication Techniques

TL;DR: A comprehensive review of the developments in the field over the past decade is provided, discussing recent advances in organic gain materials, which are today often based on solid-state organic semiconductors, as well as optical feedback structures, and device fabrication.
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Progress on Perovskite Materials and Solar Cells with Mixed Cations and Halide Anions

TL;DR: The recent progress on the synthesis and fundamental aspects of mixed cation and halide perovskites correlating with device performance, long-term stability, and hysteresis are reviewed.
Journal ArticleDOI

Perovskite Photodetectors Operating in Both Narrowband and Broadband Regimes

TL;DR: Narrowband photodetectors are designed, which operate in the broadband regime upon bottom illumination and in the narrowband regime upon top illumination (from the air/perovskite side) and show high external quantum efficiency.
Journal ArticleDOI

Few-Layer MoS2 Flakes as Active Buffer Layer for Stable Perovskite Solar Cells

TL;DR: In this article, MoS2 flakes are exploited as an active buffer layer in hybrid lead-halide perovskite solar cells (PSCs) to prevent the formation of shunt contacts.
References
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Journal ArticleDOI

Generalized Gradient Approximation Made Simple

TL;DR: A simple derivation of a simple GGA is presented, in which all parameters (other than those in LSD) are fundamental constants, and only general features of the detailed construction underlying the Perdew-Wang 1991 (PW91) GGA are invoked.
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Special points for brillouin-zone integrations

TL;DR: In this article, a method for generating sets of special points in the Brillouin zone which provides an efficient means of integrating periodic functions of the wave vector is given, where the integration can be over the entire zone or over specified portions thereof.
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Numerical recipes

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Hybrid functionals based on a screened Coulomb potential

TL;DR: In this paper, a new hybrid density functional based on a screened Coulomb potential for the exchange interaction is proposed, which enables fast and accurate hybrid calculations, even of usually difficult metallic systems.
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Canonical sampling through velocity rescaling

TL;DR: In this paper, the authors present a new molecular dynamics algorithm for sampling the canonical distribution, where the velocities of all the particles are rescaled by a properly chosen random factor.
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