Methods of bond activation in chemical transformations
Course:
Structural unit: Institute of High Technologies
Title
Methods of bond activation in chemical transformations
Code
ОК.17
Module type
Вибіркова дисципліна для ОП
Educational cycle
Second
Year of study when the component is delivered
2023/2024
Semester/trimester when the component is delivered
1 Semester
Number of ECTS credits allocated
4
Learning outcomes
The ability to build adequate models of chemical phenomena, to study them for obtaining
new conclusions and deepening of understanding of nature, including using methods
molecular, mathematical and computer modeling.
Ability to organize, plan and implement a chemical experiment.
The ability to interpret, objectively evaluate and present the results of one's work
research.
The ability to formulate new hypotheses and scientific problems in the field of chemistry, to choose directions
and appropriate methods for their solution based on an understanding of modern issues
research in the field of chemistry and taking into account the available resources.
The ability to choose optimal research methods and techniques.
Possession of the general methodology of carrying out scientific research.
Form of study
Prerequisites and co-requisites
The student should know:
fundamentals of general, inorganic and organic chemistry, biochemistry,
molecular biology, physical chemistry and supramolecular chemistry, as well as fundamentals
physical research methods.
The student should be able to:
Use modern electronic databases in the field of chemistry and biology,
other Internet resources.
Course content
This course provides an in-depth study of theoretical and methodological foundations
of organic chemistry, specific methods of synthetic organic chemistry for complex them
use during the production of organic substances of different classes, which are real
are used in the most diverse spheres of people's activities, the formation of practical
skills and abilities for planning and conducting complex chemical experiments, formation and
development of a holistic view of the methods of synthesis of organic compounds. methods of intensification
processes. Special attention in this course is paid to the basics of radical chemistry, photochemistry,
metathesis as examples of fundamental reactions in organic chemistry, the idea of
industrial processes, "flow" chemistry and its features.
Recommended or required reading and other learning resources/tools
1. Comprehensive Organic Transformations. A Guide to Functional Group Preparations. Wiley; 3rd
edition (March 20, 2018). ISBN-13: 978-0470927953
2. Radical Reactions in Organic Synthesis, P. Renaud, M. P. Sibi Ed, 2001 WILEY‐VCH Verlag
GmbH
4. J. D. Coyle, Introduction to Organic Photochemistry. John Wiley & Sons, Inc. January 1991,
ISBN: 978-0-471-90975-0
5. Fundamentals and Applications of Organic Electrochemistry. T. Fuchigami, S. Inagi, M. Atobe
Ed. 2015 John Wiley & Sons, Ltd Online ISBN:9781118670750
Planned learning activities and teaching methods
lectures, practical
Assessment methods and criteria
- semester assessment:
1. Modular control work 1 - RN 2. - 12 points
2. Modular control work 2 - RN 2. - 12 points
3. Modular control work 3 - RN 2. - 12 points
4. Final test - RN 1. - 12 points
5. Practical report - RN 3. - 6 points
6. Home test work. - PH 4. - 6 points
- final evaluation: in the form of an exam
The form of the exam is a test control robot and an interview based on it. Results
training, which is evaluated in the test control work, is RN 1. The maximum number of points which
can be obtained by a student, is 40 points.
Language of instruction
Ukrainian
Lecturers
This discipline is taught by the following teachers
Volochnyuk
Dmytro
Department of Supramolecular Chemistry
Institute of High Technologies
Institute of High Technologies
Departments
The following departments are involved in teaching the above discipline
Department of Supramolecular Chemistry
Institute of High Technologies