88380 - SUSTAINABLE AND NATURAL MATERIAL-DERIVED ORGANIC PROCESSES

Anno Accademico 2023/2024

  • Docente: Paolo Melchiorre
  • Crediti formativi: 6
  • SSD: CHIM/06
  • Lingua di insegnamento: Inglese
  • Modalità didattica: Convenzionale - Lezioni in presenza
  • Campus: Bologna
  • Corso: Laurea Magistrale in Low Carbon Technologies and Sustainable Chemistry (cod. 9246)

Conoscenze e abilità da conseguire

At the end of the course, the student is acquainted with the practice of green chemistry in the industrial synthesis of fine and commodity organic chemicals. Focusing on efficiency in organic synthesis, the student will know how to deal with the different aspects of this approach and ensuing applications. The student will be familiar with some of the natural products that have key roles in various areas of the chemical industry. The focus will be set on both mass intensive materials and structurally complex natural compounds of great medicinal/industrial utility. The student will know the structure, the properties, the industrial utilization and the biosynthetic pathways of these organic materials.

Contenuti

-Background knowledge:

A fundamental understanding of organic chemistry, which is generally acquired in bachelor courses in chemistry and related disciplines, is required. In more detail:

- Recognition of the primary functional groups present in small organic molecules, including their reactivity and mechanistic implications.

- Familiarity with the fundamental principles of catalysis and stereochemistry.

- Understanding of selectivity in its different aspects, including chemoselectivity, regioselectivity, and stereoselectivity.

- Proficiency in basic principles of synthesis planning and understanding of reaction mechanisms.

The main subjects treated in the course will be:

- What makes a chemical process sustainable – the principles of green chemistry

- Survey of the modern synthetic approaches available for the sustainable preparation of relevant molecules. The crucial role of catalysis, including transition-metal catalysis, organocatalysis, enzymatic catalysis, and photoredox catalysis.

- Survey of fundamental transformations mediated by these modern catalytic approaches and their applications to the construction of complex organic molecules and in industrial syntheses of commodity chemicals and active pharmaceutical ingredients. Analysis of case studies from literature.

- Principles and mechanisms of catalytic processes intensively used in the fine and commodity chemical industries: catalytic reactions and asymmetric synthesis.

-Introduction to industrial organic chemistry: the main parameters to consider in scaling a laboratory synthesis to a plant process with emphasis on process safety and solvent choice based on their properties including renewability.

-Basic environmental assessment of a fine chemical process, in terms of mass intensity and waste limitation.

-Practical activity: laboratory experiment exemplifying and applying the concepts described during the lectures.

Testi/Bibliografia

Lectures handouts and literature examples, available via the Virtuale web platform and through the library service

Supplementary reading:

Clayden, Greeves, Warren, "Organic Chemistry", Oxford University Press: several copies available in the library.

Metodi didattici

Lectures assisted by videoprojections and blackboard drawings. Interactive training and laboratory activity.

To participate to the teaching laboratory of this course, all students must attend Modules 1 and 2 [https://www.unibo.it/en/services-and-opportunities/health-and-assistance/health-and-safety/online-course-on-health-and-safety-in-study-and-internship-areas] online, while Module 3 on health and safety is to be attended in class. Information about Module 3 attendance schedule is available on the website of your degree programme.

Modalità di verifica e valutazione dell'apprendimento

The oral exam will consist of questions and exercises related to the topics covered in the lessons. The student is expected to demonstrate their understanding by answering specific questions that may arise during the discussion, covering all concepts discussed throughout the lessons.

The evaluation of the student's knowledge and understanding of the course content will be assessed through a single oral exam. The final mark will be given on a scale of 30/30.

Strumenti a supporto della didattica

Video projections and blackboard.

Use of Wooclap as an interactive platform.

Literature material (library service).

Laboratory activity.

Orario di ricevimento

Consulta il sito web di Paolo Melchiorre

SDGs

Istruzione di qualità Imprese innovazione e infrastrutture Consumo e produzione responsabili Lotta contro il cambiamento climatico

L'insegnamento contribuisce al perseguimento degli Obiettivi di Sviluppo Sostenibile dell'Agenda 2030 dell'ONU.