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Microstructural Evolution of Materials: Surfaces & Surface-Driven Reactions

Discover the principles of surfaces and surface-driven reactions that explain materials science phenomena.

Course Information

Format: Self-Paced
Estimated: 3 weeks, 10 hours per week
Start: AnytimeEnd:

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About this Course

A four-part series of online modules, Microstructural Evolution of Materials introduces various phenomena in various classes of materials. In this course, you will learn how materials develop different microstructures based on the processing technique used, and how these microstructures relate to the properties of the material.

Covering similar content to the MIT course 3.022: Microstructural Evolution of Materials, this online version is intended for undergraduate engineering and science students, as well as professionals, who are interested in materials statistics, kinetics, and microstructural transformations.

Microstructural Evolution of Materials is a series of the following four modules:

This third module discusses surfaces and surface-driven reactions. Topics include surface energy, faceted and non-faceted growth, and growth and ripening.

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What you'll learn

At the end of this third module of the course, you will be able to:

  • Predict surface energy along various crystalline planes
  • Understand how surface energy can be exploited in nanoparticle synthesis
  • Explain the Ostwald ripening process in solid solutions.

Prerequisites

Meet your instructors

Juejun Hu

John F. Elliott Professor of Materials Science and Engineering

Professor Hu earned a BS in materials science and engineering at Tsinghua University in 2004 and a PhD in the same discipline at MIT in 2009. Before joining MIT, he was an assistant professor at the University of Delaware from 2010 to 2014. Professor Hu is a fellow of professional societies the American Ceramics Society, Optica, and SPIE.