Organic Solar Cells - Theory and Practice (Coursera)

Organic Solar Cells - Theory and Practice (Coursera)

The goal of the course is to give students awareness of the largest alternative form of energy and how organic / polymer solar cells can harvest this energy. The course provides an insight into the theory behind organic solar cells and describes the three main research areas within the field i.e. materials, stability and processing.

Class Deals by MOOC List - Click here and see Coursera's Active Discounts, Deals, and Promo Codes.

NOTE: This course is a specialized course on organic solar cells. If you are looking for a more general solar cell course, we strongly recommend "Introduction to solar cells" .

Syllabus

WEEK 1
Solar Cells and Life Cycle Analysis
By the end of the module we have set the following goals for you: -You should have gained knowledge on solar cells, and their place as a renewable energy -Be able to distinguish between different solar cell technologies -Describe the difference between the three generations of solar cells -Identify the four steps of life cycle analysis -Determine differences between embedded energy, energy return factor, and energy payback time.

WEEK 2
Organic and Polymer Solar Cells
By the end of this module you should: -Be able to identify the different steps in the theory behind the solar cells -Be able to measure the efficiency of a solar cell -Be able to describe the different layers in the solar cell and understand their function -Be ready to argue for different applications of the solar cells.

WEEK 3
Materials in Solar Cells
By the end of this module you should: -Know why we need conjugated polymers and side chains -Know about low band gap polymers -Be able to identify the most common polymerization methods -Be familiar with common characterization techniques used with the materials -Know about acceptor materials used in the active layer of organic solar cells.

WEEK 4
Stability and Degradation
By the end of this module you should: -Be able to identify different kinds of degradation behaviours -Know about decay curves, including concepts such as burn-in and T80 -Distinguish between different ISOS standards.

WEEK 5
Solar Cell Fabrication
By the end of this module you will be able to: -Describe the lab scale techniques and the pros and cons -Describe the difference between coating and printing -Identify the different coating and printing techniques.

WEEK 6
Wrapping Up
This is the final module of the course and it is almost time to sit back and congratulate yourself! You just have two more videos and an exam to complete.

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Mechanics of Materials I: Fundamentals of Stress & Strain and Axial Loading (Coursera) Coursera
Georgia Institute of Technology

Mechanics of Materials I: Fundamentals of Stress & Strain and Axial Loading (Coursera)

This course explores the topic of solid objects subjected to stress and strain. The methods taught in the course are used to predict the response of engineering structures to various types of loading, and to analyze the vulnerability of these structures to various failure modes. Axial loading with be the focus in this course.

May 25th 2026
5-12 Weeks
Global Warming I: The Science and Modeling of Climate Change (Coursera) Coursera
University of Chicago

Global Warming I: The Science and Modeling of Climate Change (Coursera)

This class describes the science of global warming and the forecast for humans’ impact on Earth’s climate. Intended for an audience without much scientific background but a healthy sense of curiosity, the class brings together insights and perspectives from physics, chemistry, biology, earth and atmospheric sciences, and even some economics—all based on a foundation of simple mathematics (algebra).

Jun 1st 2026
5-12 Weeks
Our Energy Future (Coursera) Coursera
University of California, San Diego

Our Energy Future (Coursera)

This course is designed to introduce students to the issues of energy in the 21st century – including food and fuels – which are inseparably linked – and will discuss energy production and utilization from the biology, engineering, economics, climate science, and social science perspectives. This course will cover the current production and utilization of energy, as well as the consequences of this use, examining finite fossil energy reserves, how food and energy are linked, impacts on the environment and climate, and the social and economic impacts of our present energy and food production and use.

Jun 1st 2026
5-12 Weeks
Material Processing (Coursera) Coursera
Georgia Institute of Technology

Material Processing (Coursera)

Have you ever wondered why ceramics are hard and brittle while metals tend to be ductile? Why some materials conduct heat or electricity while others are insulators? Why adding just a small amount of carbon to iron results in an alloy that is so much stronger than the base metal? In this course, you will learn how a material’s properties are determined by the microstructure of the material, which is in turn determined by composition and the processing that the material has undergone.

May 25th 2026
2 Weeks
Sustainability of Social-Ecological Systems: the Nexus between Water, Energy and Food (Coursera) Coursera
Universitat Autònoma de Barcelona

Sustainability of Social-Ecological Systems: the Nexus between Water, Energy and Food (Coursera)

In this course you will become familiar with the ideas of the water-energy-food nexus and transdisciplinary thinking. You will learn to see your community or country as a complex social-ecological system and to describe its water, energy and food metabolism in the form of a pattern, as well as to map the categories of social actors.

May 25th 2026
5-12 Weeks
Spacecraft Dynamics Capstone: Mars Mission (Coursera) Coursera
University of Colorado Boulder

Spacecraft Dynamics Capstone: Mars Mission (Coursera)

The goal of this capstone spacecraft dynamics project is to employ the skills developed in the rigid body Kinematics, Kinetics and Control courses. An exciting two-spacecraft mission to Mars is considered where a primary mother craft is in communication with a daughter vehicle in another orbit. The challenges include determining the kinematics of the orbit frame and several desired reference frames, numerically simulating the attitude dynamics of the spacecraft in orbit, and implementing a feedback control that then drives different spacecraft body frames to a range of mission modes including sun pointing for power generation, nadir pointing for science gathering, mother spacecraft pointing for communication and data transfer. Finally, an integrated mission simulation is developed that implements these attitude modes and explores the resulting autonomous closed-loop performance.

May 25th 2026
5-12 Weeks
Planet Earth ... and You! (Coursera) Coursera
University of Illinois at Urbana-Champaign

Planet Earth ... and You! (Coursera)

Earthquakes, volcanoes, mountain building, ice ages, landslides, floods, life evolution, plate motions—all of these phenomena have interacted over the vast expanses of deep time to sculpt the dynamic planet that we live on today. Planet Earth presents an overview of several aspects of our home, from a geological perspective. We begin with earthquakes—what they are, what causes them, what effects they have, and what we can do about them. We will emphasize that plate tectonics—the grand unifying theory of geology—explains how the map of our planet's surface has changed radically over geologic time, and why present-day geologic activity—including a variety of devastating natural disasters such as earthquakes—occur where they do. We consider volcanoes, types of eruptions, and typical rocks found there.

Jun 1st 2026
5-12 Weeks
Physics 101 - Forces and Kinematics (Coursera) Coursera
Rice University

Physics 101 - Forces and Kinematics (Coursera)

This course serves as an introduction to the physics of force and motion. Upon completion, learners will have an understanding of how mathematical laws and conservation principles describe the motions and interactions of objects all around us. They will gain experience in solving physics problems with tools such as graphical analysis, algebra, vector analysis, and calculus.

Jun 1st 2026
4 Weeks
Mechanics: Motion, Forces, Energy and Gravity, from Particles to Planets (Coursera) Coursera
UNSW Sydney - University of New South Wales

Mechanics: Motion, Forces, Energy and Gravity, from Particles to Planets (Coursera)

Most of the phenomena in the world around you are, at the fundamental level, based on physics, and much of physics is based on mechanics. Mechanics begins by quantifying motion, and then explaining it in terms of forces, energy and momentum. This allows us to analyse the operation of many familiar phenomena around us, but also the mechanics of planets, stars and galaxies.

May 25th 2026
5-12 Weeks
Energy management for real estate. Methods and digital tools (Coursera) Coursera
Politecnico di Milano

Energy management for real estate. Methods and digital tools (Coursera)

The figure of the Energy Manager (EM), introduced in the United States in the early 1970s, during the first oil crisis, brought to light the need to get more work out of less energy. In Italy, this figure was officially introduced by Law 308/82, but had its first strong impulse thanks to Law 10/91, aimed at implementing the National Energy Plan on the rational use of energy, energy saving and the development of renewable energy sources. More in detail, an Energy Manager is a person whose task is to manage what concerns energy within a company, a public body, or more generally a structure, verifying the energy consumption, optimising it, and promoting interventions aimed at energy efficiency and the use of renewable sources.

Jun 1st 2026
4 Weeks