Book description
Real insight from leading experts in the field into the causes of the unique photovoltaic performance of perovskite solar cells, describing the fundamentals of perovskite materials and device architectures.The authors cover materials research and development, device fabrication and engineering methodologies, as well as current knowledge extending beyond perovskite photovoltaics, such as the novel spin physics and multiferroic properties of this family of materials.
Aimed at a better and clearer understanding of the latest developments in the hybrid perovskite field, this is a must-have for material scientists, chemists, physicists and engineers entering or already working in this booming field.
Table of contents
- Cover
- Dedication
-
Part I: Basic Properties and Early Works in Organic–Inorganic Perovskites
- 1.1 Structural, Optical, and Related Properties of Some Perovskites Based on Lead and Tin Halides: The Effects on Going from Bulk to Small Particles
-
1.2 Ab Initio and First Principles Studies of Halide Perovskites
- 1.2.1 Introduction to Ab Initio and DFT Studies of All‐inorganic, 3D and Layered Hybrid Organic Metal Halide Perovskites
- 1.2.2 Brillouin Zone Folding, Lattice Strain, and Topology of the Electronic Structure
- 1.2.3 Importance of Spin–Orbit Coupling (SOC)
- 1.2.4 Interplay of SOC and Loss of Inversion Symmetry: Rashba and Dresselhaus Effects
- 1.2.5 Collective Vibrations, Stochastic Cation Reorientations, and Molecular Dynamics
- References
- 1.3 Excitonics in 2D Perovskites
- Part II: Organic–Inorganic Perovskite Solar Cells
- Part III: Perovskite Light Emitting Devices
- Part IV: Beyond Perovskite Photovoltaics
- Index
- End User License Agreement
Product information
- Title: Halide Perovskites
- Author(s):
- Release date: March 2019
- Publisher(s): Wiley-VCH
- ISBN: 9783527341115
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