Organic Electronics

Major: Electronics
Code of subject: 6.171.01.E.058
Credits: 5.00
Department: Department of Electronic Engineering
Lecturer: DSc Tech., prof. Stakhira Pavlo Yosupovuch Doctor of Philology, assistant Kutsiy Stepan Andriyovych
Semester: 7 семестр
Mode of study: денна
Мета вивчення дисципліни: The purpose of the discipline is to study the peculiarities of organic semiconductor materials for their use in electronic devices, such as organic light-emitting diodes (OLEDs), organic photovoltaic structures, sensors, etc., to acquire the skills of a comprehensive study of the morphological, structural, optical, electrophysical properties of organic semiconductors, to show the peculiarities of constructive solutions for the manufacture of electronic devices based on ix, to study the methods and means of forming organic electronic devices, as well as methods of researching the main characteristics of the formed structures.
Завдання: General competences: ZK1. Ability to apply knowledge in practical situations. ZK2. Knowledge and understanding of the subject area and understanding of professional activity. ZK6. Ability to learn and master modern knowledge. ZK7. Ability to search, process and analyze information from various sources. ZK10. Skills of performing safe activities. Professional competences: FC3. The ability to integrate knowledge of the fundamental sections of physics and chemistry to understand the processes of solid-state, functional and power electronics, electrical engineering. FC4. Ability to consider social, environmental, ethical, economic and commercial considerations affecting the efficiency and results of electronics engineering activities. FC9. The ability to determine and evaluate the characteristics and parameters of electronic equipment materials, analog and digital electronic devices for the design of microprocessor and electronic systems, devices of functional, quantum and laser electronics. FC10. The ability to apply industry standards and quality standards for the functioning of electronic devices and systems in practice.
Learning outcomes: PH1. ZN.4 Evaluate the characteristics and parameters of electronic equipment materials, understand the basics of solid-state electronics, electrical engineering, analog and digital circuit engineering, conversion and microprocessor engineering PH2. ZN.17. Apply experimental skills (knowledge of experimental methods and the procedure for conducting experiments) to test hypotheses and research electronic phenomena, be able to use standard equipment, plan, draw up diagrams; analyze, model and critically evaluate the obtained results PH3. UM2. Evaluate the subject of educational activity, determine the general goal and specific tasks, choose adequate means of solving them to achieve the result, exercise the necessary self-control, use reference literature and technical documentation, develop and apply your creative and organizational abilities in professional activities, organize the workplace, plan working hours PH4. UM.10. To conduct tests, experimental studies of the properties of materials, components and devices of electronic equipment; carry out measurements of parameters and components of electronic equipment, develop programs for testing electronic equipment. PH5. KOM2. Use of communicative competence for effective interaction in various spheres of communication; selection and systematization of information materials for the purpose of communication in the professional sphere. PH6. AiB2. Responsible attitude to professional duties and performed work, independence in making and implementing decisions in the process of overcoming educational difficulties, relying on one's own experience in creatively solving the problems. PH7. AiB3. Independence in data processing, interpretation and generalization, responsibility for promptness, accuracy and reliability of information submission.
Required prior and related subjects: Prerequisites: Physics. Physical foundations of electronic technology. Materials and structures of nanoelectronics. Co-requisites: Physical foundations of electronic technology. Methods of research of organic nanostructures.
Summary of the subject: The program of the study discipline "Organic Electronics" is designed for students of the Institute of Telecommunications. of radio electronics and electronic engineering, who are studying Electronics. The educational discipline is devoted to the study of the physico-chemical foundations of functioning and technologies for creating a wide range of organic electronics devices and the adaptation of the basic postulates of quantum mechanics for the description of organic objects that are the basic materials of organic electronics. The results and progress achieved in the industrial technology of manufacturing such devices. Structures and features of functioning of the main components of organic electronics devices are analyzed: organic solar photovoltaic cells, light-emitting devices based on organic materials, organic transistor structures, sensors, etc.
Опис: Organic electronics. Stages of development and formation of organic electronics. Physical properties of organic semiconductors. Contact phenomena in organic semiconductors. Organic solar photovoltaic cells (OSC). Organic light emitting devices (OLED). Sensors based on organic materials. Organic field effect transistors (OFET). Organic semiconductors as basic elements of electronic memory, molecular switches and thin-film electrochromic displays. Technology of creating thin films of organic semiconductors. Methods of forming multilayer structures based on "wet" technologies. methods of studying structural and morphological parameters of thin organic films.
Assessment methods and criteria: • laboratory and practical work, individual task (30%) • final control (70%, control measure, exam): written and oral form (70%)
Критерії оцінювання результатів навчання: Current control (30 points): Laboratory works - 15 points Practical lessons - 15 points Examination control (70 points): written component - 50 points oral component - 20 points.
Порядок та критерії виставляння балів та оцінок: 100–88 points – (“excellent”) is awarded for a high level of knowledge (some inaccuracies are allowed) of the educational material of the component contained in the main and additional recommended literary sources, the ability to analyze the phenomena being studied in their interrelationship and development, clearly, succinctly, logically, consistently answer the questions, the ability to apply theoretical provisions when solving practical problems; 87–71 points – (“good”) is awarded for a generally correct understanding of the educational material of the component, including calculations, reasoned answers to the questions posed, which, however, contain certain (insignificant) shortcomings, for the ability to apply theoretical provisions when solving practical tasks; 70 – 50 points – (“satisfactory”) awarded for weak knowledge of the component’s educational material, inaccurate or poorly reasoned answers, with a violation of the sequence of presentation, for weak application of theoretical provisions when solving practical problems; 49-26 points - ("not certified" with the possibility of retaking the semester control) is awarded for ignorance of a significant part of the educational material of the component, significant errors in answering questions, inability to apply theoretical provisions when solving practical problems; 25-00 points - ("unsatisfactory" with mandatory re-study) is awarded for ignorance of a significant part of the educational material of the component, significant errors in answering questions, inability to navigate when solving practical problems, ignorance of the main fundamental provisions.
Recommended books: 1. Баришніков Г.В. Органічна електроніка: навчальний посібник / Г.В. Баришніков, 1.1. Гельжинський, З.Ю. Готра, Б.М. Мінаєв, П.Й. Стахіра, В.В. Черпак; за ред. З.Ю, готри. - Львів: Видавництво Львівської політехніки, 2014. - 292 с. 2. Готра З.Ю. Засоби відображення інформації. Електронні дисплеї: навчальний посібник / З.Ю. Готра, В.П. Кожем’яко, З.М. Микитюк, С.В. Павлов, Г.Д. Дорощенков. - Вінниця: ВНТУ, 2014. 164 с. 3. Готра З.Ю. Субмікронні та нанорозмірні структури електроніки / З.Ю. Готра, 1.1. Григорчак, Б.А. Лукіянець, В.П. Махній, С.В. Павлов, Л.Ф. Політанський, ЕжиПотенські. Чернівці: Видавництво та друкарня «Технологічний центр», 2014. 839 с.
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