Analysis of a drift-diffusion model for perovskite solar cells
DOI10.3934/dcdsb.2024081MaRDI QIDQ6615295
Dilara Abdel, Annegret Glitzky, Matthias Liero
Publication date: 8 October 2024
Published in: Discrete and Continuous Dynamical Systems. Series B (Search for Journal in Brave)
charge transportdrift-diffusion systemperovskite solar cellsnon-Boltzmann statisticsexistence and boundedness of weak solutions
Smoothness and regularity of solutions to PDEs (35B65) Nonlinear parabolic equations (35K55) Initial-boundary value problems for second-order parabolic equations (35K20) A priori estimates in context of PDEs (35B45) Existence problems for PDEs: global existence, local existence, non-existence (35A01) Weak solutions to PDEs (35D30) Motion of charged particles (78A35) Initial-boundary value problems for mixed-type systems of PDEs (35M33) PDEs in connection with semiconductor devices (35Q81)
Cites Work
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- A \(W^{1,p}\)-estimate for solutions to mixed boundary value problems for second order elliptic differential equations
- Instationary drift-diffusion problems with Gauss-Fermi statistics and field-dependent mobility for organic semiconductor devices
- A fast and robust numerical scheme for solving models of charge carrier transport and ion vacancy motion in perovskite solar cells
- Entropy Methods for Diffusive Partial Differential Equations
- GLOBAL EXISTENCE AND ASYMPTOTIC BEHAVIOR FOR A SEMICONDUCTOR DRIFT-DIFFUSION-POISSON MODEL
- Semiconductor Equations for variable Mobilities Based on Boltzmann Statistics or Fermi-Dirac Statistics
- Reaction—Diffusion Processes of Electrically Charged Species
- A DRIFT–DIFFUSION–REACTION MODEL FOR EXCITONIC PHOTOVOLTAIC BILAYERS: ASYMPTOTIC ANALYSIS AND A 2D HDG FINITE ELEMENT SCHEME
- Three-species drift-diffusion models for memristors
- Numerical analysis of a finite volume scheme for charge transport in perovskite solar cells
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