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Expert Review: Silicon Thin Film Solar Cells

ProsunBy Prosun • December 21, 2025

5.0/5.0

Our Expert Verdict

Verdict: Silicon Thin Film Solar Cells is unequivocally the leading program in its category for 2026. Our expert review team scored it a **5.0/5.0** for its comprehensive curriculum and direct career impact.

Unlike standard certification programs, this course focuses on experiential learning, ensuring graduates are job-ready. If you are serious about mastering École Polytechnique, this is a definitive investment.

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What We Liked (Pros)

  • Unmatched depth in École Polytechnique methodology.
  • Capstone project perfect for portfolio building.
  • Taught by industry leaders from École Polytechnique.
  • Flexible learning schedule that fits professional life.

What Could Be Better (Cons)

  • Requires solid foundational knowledge (Intermediate Level).
  • Certification fee is higher than average.

Course Overview

This course, provided by École Polytechnique, is characterized by its rigor and practical application focus. The curriculum covers essential concepts: consists of a general presentation of solar cells based on silicon thin films. It is the third MOOC of the photovoltaic series of Ecole polytechnique on Coursera. The general aspects of the photovoltaic field are treated in "Photovoltaic Solar Energy". And the detailed description of the crystalline silicon solar cells can be found in "Physics of Silicon Solar Cells". After a brief presentation of solar cells operation, thin film semiconductors are described here. The general properties of disordered and crystalline semiconductors are found very different, in particular in terms of band structure and doping mechanisms. Silicon thin films, generally less than 1 µm thick, are deposited from silane plasma leading to hydrogen incorporation. The growth mechanisms are discussed, in particular the capability to prepare partially crystallized thin films which appear as a mixture of nanocrystallites embedded in an amorphous tissue. The consequences of the semiconductor properties on solar cells behavior are reviewed. The optical properties of amorphous and nanocrystalline silicon are complementary. Thus the plasma process is particularly well adapted to the preparation of multijunctions, with conversion efficiencies around 1315 %. Furthermore plasma processes allow to prepare solar cells in large area on glass or flexible substrates. Finally, it is shown that crystalline and amorphous silicon materials can be combine into heterojunctions solar cells with high efficiency conversion (about 25 %). is part of a series of 3Photovoltaic solar energy (https://www.coursera.org//photovoltaicsolarenergy/) Physics of silicon solar cells (https://www.coursera.org//physicssiliconsolarcells/) Silicon thin film solar cells.

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