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CHEN40810

Academic Year 2024/2025

Nanomaterials (CHEN40810)

Subject:
Chemical Engineering
College:
Engineering & Architecture
School:
Chem & Bioprocess Engineering
Level:
4 (Masters)
Credits:
5
Module Coordinator:
Dr Veronica Sofianos
Trimester:
Autumn
Mode of Delivery:
On Campus
Internship Module:
No
How will I be graded?
Letter grades

Curricular information is subject to change.

This module is designed to give a broad introduction to nanomaterials and how we can engineer nanomaterials with desired properties for specific applications. Amongst the topics covered are: synthesis of nanomaterials, characterization techniques for evaluating their chemical and physical properties, and their applications in various industries. There is an emphasis on topics relevant to current research areas within the School, with particular emphasis on energy and sustainability. The module has a strong focus on industrial applications of Nanotechnology. Examples of applications in energy production, energy storage and sustainability will be demonstrated.

About this Module

Learning Outcomes:

On completion of this module students should be able to:

- Synthesize nanomaterials with controlled morphologies and functionality, such as spheres, tubes, rods, plates, cuboids etc.
- Identify and apply the most appropriate methods for engineering their surfaces in order to tailor their functionality according to the targeted application.
- Apply various characterization techniques as to study their physical, mechanical and chemical properties and their surfaces.
- Demonstrate an understanding of the role of nanotechnology in industrial applications.

Learning outcomes on transferable skills:

- Critical thinking and problem solving.
- Working effectively in a multidisciplinary environment.

Student Effort Hours:
Student Effort Type Hours
Specified Learning Activities

60

Autonomous Student Learning

40

Lectures

24

Total

124


Approaches to Teaching and Learning:
- Lectures with clear learning outcomes and real life examples.
- Interactive learning environment where questions and brief discussions take place.
- Constructive feedback will be given throughout the module's timeframe.

Requirements, Exclusions and Recommendations
Learning Requirements:

At least a 2:1 in Chem or Mech Eng


Module Requisites and Incompatibles
Not applicable to this module.
 

Assessment Strategy
Description Timing Component Scale Must Pass Component % of Final Grade In Module Component Repeat Offered
Group Work Assignment: This group work assignment will be in the form of a group presentation and will be based on topics that students can pick at the start of the term. Week 12 Graded No
20
No
Exam (In-person): End of term examination will be based on reading material given during the term. End of trimester
Duration:
2 hr(s)
Graded No
60
No
Assignment(Including Essay): A choice of topics will be given at the start of the term for students to select and base their assignment on with a due date on week 10. Week 10 Graded No
20
No

Carry forward of passed components
Yes
 

Resit In Terminal Exam
Summer No
Please see Student Jargon Buster for more information about remediation types and timing. 

Feedback Strategy/Strategies

• Group/class feedback, post-assessment

How will my Feedback be Delivered?

General and constructive feedback on the assignments will be given to the class. If individual feedback is requested, this will become available to the student if the request is within reason.

Name Role
Dr Marziyeh Jannesari Lecturer / Co-Lecturer

Timetabling information is displayed only for guidance purposes, relates to the current Academic Year only and is subject to change.
Autumn Lecture Offering 1 Week(s) - Autumn: All Weeks Thurs 12:00 - 12:50
Autumn Lecture Offering 1 Week(s) - Autumn: All Weeks Wed 13:00 - 13:50