Introduction to High-Throughput Materials Development (Coursera)

Introduction to High-Throughput Materials Development (Coursera)

This course is an introduction to high-throughput experimental methods that accelerate the discovery and development of new materials. This course is an introduction to high-throughput experimental methods that accelerate the discovery and development of new materials. It is well recognized that the discovery of new materials is the key to solving many technological problems faced by industry and society. These problems include energy production and utilization, carbon capture, tissue engineering, and sustainable materials production, among many others. This course will introduce the learner to a remarkable new approach to materials discovery and characterization: high-throughput materials development (HTMD).

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

Engineers and scientists working in industry, academic or government will benefit from this course by developing an understanding of how to apply one element of HTMD, high-throughput experimental methods, to real-world materials discovery and characterization problems. Internationally leading faculty experts will provide a historical perspective on HTMD, describe preparation of ‘library’ samples that cover hundreds or thousands of compositions, explain techniques for characterizing the library to determine the structure and various properties including optical, electronic, mechanical, chemical, thermal, and others. Case studies in energy, transportation, and biotechnology are provided to illustrate methodologies for metals, ceramics, polymers and composites.
The Georgia Tech Institute for Materials (IMat) developed this course in order to introduce a broad audience to the essential elements of the Materials Genome Initiative. Other courses will be offered by Georgia Tech through Coursera to concentrate on integrating (i) high-throughput experimentation with (ii) modeling and simulation and (iii) materials data sciences and informatics.
After completing this course, learners will be able to
• Identify key events in the development of High-Throughput Materials Development (HTMD)
• Communicate the benefits of HTMDwithin your organization.
• Explain what is meant by high throughput methods (both computational and experimental), and their merits for materials discovery/development.
• Summarize the principles and methods of high throughput creation/processing of material libraries (samples that contain 100s to 1000s of smaller samples).
• State the principles and methods for high-throughput characterization of structure.
• State the principles and methods for high throughput property measurements.
• Identify when high-throughput screening (HTS) will be valuable to a materials discovery effort.
• Select an appropriate HTS method for a property measurement of interest.
• Identify companies and organizations working in this field and use this knowledge to select appropriate partners for design and implementation of HTS efforts.
• Apply principles of experimental design, library synthesis and screening to solve a materials design challenge.
• Conceive complete high-throughput strategies to obtain processing-structure-property (PSP) relationships for materials design and discovery.

Syllabus

WEEK 1
Welcome
What you should know before you start the course
Introduction
Frame the grand problem of materials design and how the Materials Genome Initiative approach, which encompasses high-throughput computational and experimental techniques as essential elements, will accelerate materials discovery and development. Provide a historical perspective and future outlook.

WEEK 2
Library Preparation
This module covers methods to experimentally generate discrete or gradient material libraries for interrogating the influence of composition or microstructure on properties; various process and synthesis methods for different classes of materials are considered

WEEK 3
High-Throughput Characterization of Composition and Structure
This module covers techniques suitable for measuring the elemental composition and the structure in the material libraries; techniques for different classes of materials are considered.

WEEK 4
High-Throughput Property Measurements
This module covers techniques to experimentally conduct property measurements suitable for high-throughput screening; optical, electronic, mechanical, chemical, and thermal properties are considered.

WEEK 5
Applications
This module illustrates several applications of HTMD covering a range of material classes, properties, industrial sectors, and maturity levels.

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

Related Courses

Introduction to Psychology (Coursera) Coursera
Yale University

Introduction to Psychology (Coursera)

What are people most afraid of? What do our dreams mean? Are we natural-born racists? What makes us happy? What are the causes and cures of mental illness? This course tries to answer these questions and many others, providing a comprehensive overview of the scientific study of thought and behavior. It explores topics such as perception, communication, learning, memory, decision-making, persuasion, emotions, and social behavior. We will look at how these aspects of the mind develop in children, how they differ across people, how they are wired-up in the brain, and how they break down due to illness and injury.

Aug 31st 2026
5-12 Weeks
Materials Data Sciences and Informatics (Coursera) Coursera
Georgia Institute of Technology

Materials Data Sciences and Informatics (Coursera)

This course aims to provide a succinct overview of the emerging discipline of Materials Informatics at the intersection of materials science, computational science, and information science. Attention is drawn to specific opportunities afforded by this new field in accelerating materials development and deployment efforts.

Sep 7th 2026
5-12 Weeks
Biology Everywhere Foundations (Coursera) Coursera
University of Colorado Boulder

Biology Everywhere Foundations (Coursera)

In this course, we will explore the nature of science and biology. We will discuss what the “biology everywhere” philosophy means and the history of the “biology everywhere” project. We will also discuss what science (and biology) are as a discipline of inquiry and how chemistry is foundational to understanding biology.

Sep 7th 2026
4 Weeks
Chemistry (Coursera) Coursera
University of Kentucky

Chemistry (Coursera)

This course is designed to cover subjects in advanced high school chemistry courses, correlating to the standard topics as established by the American Chemical Society. This course is a precursor to the Advanced Chemistry Coursera course. Areas that are covered include atomic structure, periodic trends, compounds, reactions and stoichiometry, bonding, and thermochemistry.

Sep 7th 2026
5-12 Weeks
Mastering bitumen for better roads and innovative applications (Coursera) Coursera
École des Ponts ParisTech

Mastering bitumen for better roads and innovative applications (Coursera)

During the four coming weeks, best experts in bitumen will bring you their knowledge and experience to build a strong understanding of today’s realities and new perspectives on the future of bitumen. Total is the European leader on bitumen markets. Innovation has always been the key to sustainability and durability in the products they develop. Their main objective here is to share technical knowledge and experience to insure bitumen are being used in the most effective and efficient ways for their different applications in road works.

Sep 7th 2026
4 Weeks
Organization Planning and Development for the 6 σ Black Belt (Coursera) Coursera
University System of Georgia

Organization Planning and Development for the 6 σ Black Belt (Coursera)

This course is designed for professionals interested in learning the principles of Lean Sigma, the DMAIC process and DFSS. This course is number 1 of 8 in this specialization dealing with topics in Organization Planning and Development. Professionals with some completed coursework in statistics and a desire to drive continuous improvement within their organizations would find this course and the others in this specialization appealing. Method of assessment consists of several formative and summative quizzes and a multi-part peer reviewed project completion regiment.

Sep 7th 2026
5-12 Weeks
Beer Quality: Freshness (Coursera) Coursera
University of California, Davis

Beer Quality: Freshness (Coursera)

In this third course of the Beer Quality Series on beer freshness, led by distinguished professor Charles Bamforth, Ph.D, you will learn about beer flavor preconceptions, expectations, and causes of flavor instability. You'll also learn about the science of flavor change and the study and process impacts of flavor stability. In addition, you will review light instability and how it can lead to skunking.

Sep 7th 2026
4 Weeks
General Chemistry: Concept Development and Application (Coursera) Coursera
Rice University

General Chemistry: Concept Development and Application (Coursera)

This course will cover the topics of a full year, two semester General Chemistry course. We will use a free on-line textbook, Concept Development Studies in Chemistry, available via Rice’s Connexions project. The fundamental concepts in the course will be introduced via the Concept Development Approach developed at Rice University. In this approach, we will develop the concepts you need to know from experimental observations and scientific reasoning rather than simply telling you the concepts and then asking you to simply memorize or apply them.

Sep 7th 2026
5-12 Weeks
The Science of Gastronomy (Coursera) Coursera
The Hong Kong University of Science and Technology - HKUST

The Science of Gastronomy (Coursera)

This course introduces a number of basic scientific principles underpinning the methodology of cooking, food preparation and the enjoyment of food. All topics covered have a strong basis in biology, chemistry, and physics application. Among others, they include the consumption of cooked food, the physiological and evolutionary implication of the senses, geographic and cultural influences on food, and the rationale behind food preparation. We will also discuss issues such as coupling of senses to improve sense stimulation; altering flavor by chemical means; and modification of the coloration to improve the appearance of dishes. Following the video demonstrations of the scientific principles of cooking, you will learn to recognize the key ingredients and their combinations for preparing good healthy food.

Sep 1st 2026
5-12 Weeks