| Attribute | Detail |
|---|---|
| Format | Online, self-paced course |
| Level | Basic / Beginner |
| Duration | 2–3 Weeks |
| Certification | e-Certification |
| Fee | ₹199 / $20 |
| Tools | SEM TEM XRD Spectroscopy Nanomaterial Analysis |
About the Characterization of Nanomaterials Course
The Characterization of Nanomaterials course is a free, beginner-friendly self-paced program designed to introduce learners to the basic techniques used to study and analyze nanomaterials.
The course explains how scientists determine the size, shape, structure, surface properties, composition, and behavior of nanomaterials using characterization methods. Learners will explore basic concepts such as microscopy, spectroscopy, diffraction, particle analysis, and the importance of characterization in nanotechnology research and industrial applications.
Program Highlights
• Free beginner-level nanomaterial characterization course
• Online self-paced learning format
• Simple explanation of nanomaterial analysis techniques
• Covers microscopy, spectroscopy, and structural analysis basics
• Real-world examples from nanotechnology, healthcare, and materials science
• Suitable for students and non-technical learners
• e-Certification upon successful completion
Course Curriculum
Module 1: Introduction to Nanomaterial Characterization
- What is Nanomaterial Characterization?
- Importance of Characterization in Nanotechnology
- Understanding Size, Shape, and Surface Properties
- Applications in Research and Industry
Module 2: Microscopy Techniques
- Introduction to Electron Microscopy
- Scanning Electron Microscopy (SEM) Basics
- Transmission Electron Microscopy (TEM) Basics
- Atomic Force Microscopy (AFM) Concepts
Module 3: Spectroscopy and Structural Analysis
- Introduction to Spectroscopy Techniques
- UV-Visible and Infrared Spectroscopy Basics
- X-Ray Diffraction (XRD) Concepts
- Analyzing Crystal Structure and Composition
Module 4: Particle and Surface Analysis
- Particle Size and Distribution Basics
- Surface Area and Porosity Concepts
- Zeta Potential and Stability Basics
- Importance of Surface Characterization
Module 5: Future Scope and Learning Path
- Advanced Characterization Technologies
- AI and Automation in Material Analysis
- Career Opportunities in Nanotechnology and Materials Science
- Mini Learning Activity / Concept-Based Practice
Tools, Techniques, or Platforms Covered
SEM TEM XRD Spectroscopy Nanomaterial Analysis
Real-World Applications
- Analyzing the size and structure of nanoparticles
- Studying nanomaterial stability and surface properties
- Supporting nanotechnology research and product development
- Improving biomedical, energy, and environmental nanomaterials
- Preparing for advanced learning in materials characterization and nanoscience
Who Should Attend & Prerequisites
- This course is suitable for students, beginners, science learners, engineering learners, nanotechnology learners, and researchers interested in nanomaterial analysis and characterization.
- It is also useful for learners from materials science, nanotechnology, chemistry, physics, biotechnology, biomedical science, environmental science, and engineering backgrounds.
Certification

