BPS2021 Synthetic chemistry I: structure and reactivity
Faculty of Pharmacy and Pharmaceutical Sciences
BPS2021 Synthetic chemistry I: structure and reactivity is a level 2, 6-credit-point, undergraduate unit from the Faculty of Pharmacy and Pharmaceutical Sciences, offered in 2020 in Semester 1 at Parkville. It needs BPS1021 and BPS1022 and unlocks 6 units.
- Credit points
- 6
- Offered in 2020
- Semester 1
- Parkville
This is the 2020 handbook entry. See the 2027 entry.
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Requisites
Before BPS2021
Prerequisites
Pass these before you enrol.
After BPS2021
6 units list BPS2021 as a prerequisite or corequisite.
- BPS3212Professional experience in medicinal chemistryNo reviews yet
- BPS3221Synthetic chemistry II: Emerging methods No reviews yet
- BPS3222Synthetic strategies for drug design No reviews yet
- BPS3231Advanced experimental spectroscopyNo reviews yet
- BPS3232Molecular basis of drug actionNo reviews yet
- BPS3512Medicinal Chemistry pre-honours research projectNo reviews yet
Overview
The ability to make or modify small molecules and to confirm their identity is fundamental to the drug discovery and development process. Synthetic Chemistry I: Structure and Reactivity introduces students to the theoretical principles and practical tools of chemical synthesis, including key analytical techniques (such as NMR and mass spectroscopy) used to structurally elucidate organic compounds. The unit takes a functional group approach to examine the structure of organic molecules and their potential to interact and react with other molecules, an approach that is highly relevant not only to synthetic applications, but also more generally to drug design, drug-target interactions and drug formulation.
Offerings in 2020
| Teaching period | Campus | Mode |
|---|---|---|
| First semester | Parkville | On campus |
| First semester (Fully flex) | Parkville | Flexible |
Learning outcomes
When you finish this unit, you should be able to:
- 1
Analyse the chemical structure of pharmaceutical compounds in regard to their properties (steric, electronic, acid-base) and their reactivity using a functional group approach.
- 2
Formulate basic reaction mechanisms using the arrow-pushing formalism.
- 3
Apply kinetic and thermodynamic principles to rationalise basic reaction pathways.
- 4
Safely and competently perform a basic chemical synthesis, including product purification and collection of analytical data to characterise the product.
- 5
Describe the physical basis of selected spectroscopic techniques (primarily mass spectrometry and nuclear magnetic resonance) and explain their role in the identification of drug molecules.
- 6
Systematically analyse, report and interpret spectroscopic data to characterise small molecule synthesis products.
- 7
Clearly and accurately discuss and evaluate experimental data in a written laboratory report format.
Workload and teaching
- Twelve 1-hour online modules (discovery)
- Twenty-four 1-hour lectures
- Six 2-hour applieds
- Six 4-hour laboratories
Contacts
- Chief Examiners
- Professor Peter Scammells
- Unit Coordinators
- Professor Peter Scammells