By Daniel Abou-Ras, Thomas Kirchartz, Uwe Rau
The ebook makes a speciality of complicated characterization equipment for thin-film sunlight cells that experience confirmed their relevance either for educational and company photovoltaic learn and improvement. After an advent to thin-film photovoltaics, hugely skilled specialists file on machine and fabrics characterization equipment resembling electroluminescence research, capacitance spectroscopy, and diverse microscopy tools. within the ultimate a part of the booklet simulation innovations are awarded that are used for ab-initio calculations of suitable semiconductors and for machine simulations in 1D, 2nd and 3D.
Building on a confirmed thought, this re-creation additionally covers thermography, brief optoelectronic equipment, and absorption and photocurrent spectroscopy.
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Extra resources for Advanced Characterization Techniques for Thin Film Solar Cells
Example text
Romero, and Sebastian S. Schmidt 15 X-ray and Neutron Diffraction on Materials for Thin-Film Solar Cells 421 Susan Schorr, Christiane Stephan, Tobias Törndahl, Rene Gunder, and Daniel M. 5 494 19 Accessing Elemental Distributions in Thin Films for Solar Cells 523 Volker Hoffmann, Denis Klemm, Varvara Brackmann, Cornel Venzago, Angus A. Rockett, Thomas Wirth, Tim Nunney, Christian A. 6 Introduction 621 Molecular Dynamics Methods 621 Vapor Deposition Simulations 623 Defect Extraction Algorithms 625 Case Study: CdTe/CdS Solar Cells 626 Validation of MD Methods 626 Reducing Defects via Nanostructuring 627 MD Informed Continuum Analysis 627 Direct MD Simulations 629 Concluding Remarks 630 Acknowledgments 631 References 631 Contents 23 One-Dimensional Electro-Optical Simulations of Thin-Film Solar Cells 633 Bart E.
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Important information for thin-film solar-cell research and development is the elemental distributions in the layer stacks, analyzed by various Preface of the First Edition techniques presented in Chapter 16. Specifically for silicon thin-film solar cells, knowledge about hydrogen incorporation and stability is obtained from hydrogen effusion experiments (Chapter 17). For designing photovoltaic materials with specific electrical and optoelectronic properties, it is important to predict these properties for a given compound.