Chemistry of functional materials
Course: Chemistry (Master) external form
Structural unit: Faculty of Chemistry
Title
Chemistry of functional materials
Code
ВБ 3.3
Module type
Вибіркова дисципліна для ОП
Educational cycle
Second
Year of study when the component is delivered
2024/2025
Semester/trimester when the component is delivered
2 Semester
Number of ECTS credits allocated
4
Learning outcomes
1.1 Know and understand the classification of materials by purpose, composition and function.
1.2. Know the basic methods of obtaining and studying inorganic materials.
3. Know the classification of solid defects, write equations for their formation according to the Kroeger-Wink nomenclature.
2.1. Be able to conduct a literature search on the state of implementation and research of known functional materials in scientometric and patent databases, conduct a critical analysis of the obtained data, present the results of their research.
3.1. Ability to discuss the obtained data with the teacher and colleagues.
4.1. Be able to independently work with scientific and educational and methodological literature, search and summarize scientific and technical information.
Form of study
External form
Prerequisites and co-requisites
1. Know inorganic chemistry, physical chemistry, methods for determining the structure of chemical compounds and materials.
2. Knowledge of English at level B2
Course content
The academic discipline contributes to the formation of a holistic system of knowledge regarding methods for obtaining inorganic materials, modification of the properties of inorganic materials, development and application of materials and composites; expansion of traditional ideas about the physicochemical picture of the world using the example of functional systems; familiarization with the main laws and practical aspects of the synthesis, research and use of materials in chemical technologies; to reveal the main aspects of the application of photonic crystals, materials with a spin transition, ion-conducting materials and multiferroics in the latest technological developments of functionalized materials.
Recommended or required reading and other learning resources/tools
1. К.В. Теребіленко, І.О. Гуральский. Хімія функціональних матеріалів: К: Ліра – К, 2021,
110 с.
2. Свєткіна О.Ю. Хімія твердого тіла і технологія його формування. Методичні рекомендації
до виконання лабораторних робіт з дисципліни студентами спеціальності 161 Хімічні
технології та інженерія [електронне видання] / О.Ю. Свєткіна, С.М. Лисицька; М-во
освіти і науки України, Нац. техн. ун-т "Дніпровська політехніка". – Дніпро : НТУ "ДП",
2019. – 49 сhttp://ir.nmu.org.ua/bitstream/handle/123456789/154772/CD1198.pdf?sequence=1
3. Tarancón, A., & Pryds, N. (2019). Functional oxide thin films for advanced energy and
information technology. Advanced Materials Interfaces, 6(15), 1900990.
4. Zhang, Y., Ma, C., Lu, X., & Liu, M. (2019). Recent progress on flexible inorganic singlecrystalline functional oxide films for advanced electronics. Materials Horizons, 6(5), 911-930.
Planned learning activities and teaching methods
Lectures, laboratory work, independent work
Assessment methods and criteria
Semester control includes two module tests (remotely), evaluation of literature search and laboratory reports. Evaluation is carried out on a 100-point system. Final assessment in the form of an exam. The maximum/minimum number of points that a student can receive during the semester assessment is 100 points/60 points.
Language of instruction
Ukrainian
Lecturers
This discipline is taught by the following teachers
KATERYNA
V.
TEREBILENKO
Inorganic Chemistry Department
Faculty of Chemistry
Faculty of Chemistry
Departments
The following departments are involved in teaching the above discipline
Inorganic Chemistry Department
Faculty of Chemistry