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DEGREE REGULATIONS & PROGRAMMES OF STUDY 2015/2016

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DRPS : Course Catalogue : School of Chemistry : Chemistry

Undergraduate Course: Chemistry of Functional Materials Level 10 (VS1) (CHEM10045)

Course Outline
SchoolSchool of Chemistry CollegeCollege of Science and Engineering
Credit level (Normal year taken)SCQF Level 10 (Year 4 Undergraduate) AvailabilityPart-year visiting students only
SCQF Credits20 ECTS Credits10
SummaryA lecture course covering the design, synthesis, properties and applications of a wide range of functional materials. Particular emphasis is given to electronic materials (conductors, semiconductors and superconductors), magnetic materials, meso- and microporous solids and polymers. The course comprises individual lecture courses on: The Electronic Properties of Solids, Organic Polymer Chemistry, Microporous and Mesoporous Materials, Electronic Structure of Solids and Transition Metal Oxides.
Course description Not entered
Entry Requirements (not applicable to Visiting Students)
Pre-requisites Co-requisites
Prohibited Combinations Students MUST NOT also be taking Chemistry of Functional Materials Level 10 (CHEM10041) OR Chemistry of Functional Materials Level 11 (CHEM11037)
Other requirements None
Information for Visiting Students
Pre-requisitesNone
Course Delivery Information
Not being delivered
Learning Outcomes
At the end of this course students will be able to:
- use band theory in the form of the free electron model and the tight-binding approximation to describe the electronic structure of solids
- rationalise the electrical conductivity and some of the optoelectronic properties of insulators, semiconductors and metals using band theory
- describe and rationalise the properties of superconductors
- calculate the magnetic moment of lanthanide and orbitally quenched transition metal ions from their electronic configuration
- interpret magnetic susceptibility data for paramagnets, antiferromagnets and ferromagnets and determine the sign and strength of exchange interactions from such data
- outline strategies to design and synthesise ceramic and molecular materials with particular electronic and magnetic functionality
- describe the structure, properties, synthesis and characterisation of microporous and mesoporous materials
- outline the applications of microporous and mesoporous materials
- understand and discuss the main polymer forming processes, and the mechanisms of the reactions involved
- appreciate the chemistry of key examples of commercially important polymers
Reading List
None
Additional Information
Graduate Attributes and Skills Not entered
Additional Class Delivery Information 30 hours lectures + 6 hours tutorials, at times arranged.
KeywordsCFM (L10-VV1)
Contacts
Course organiserProf John Attfield
Tel: (0131 6)51 7229
Email:
Course secretaryMs Anne Brown
Tel: (0131 6)50 4754
Email:
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