| Course | Number of hours | ECTS points | Form of verification | Obligatory |
|---|---|---|---|---|
|
Project work: 35 Lecture: 20 |
5 | Graded assignment | Obligatory |
Nanomaterials for Medicine
|
Project work: 35 Lecture: 20 |
5 | Graded assignment | Obligatory |
|
Project work: 65 |
7 | Exam | Obligatory |
|
Project work: 40 Lecture: 25 |
7 | Exam | Obligatory |
Pre-diploma Seminar
|
Seminar: 15 |
2 | Graded assignment | Obligatory |
|
Total number of contact hours: 60 |
4 | Graded assignment | Obligatory group |
| Sum | 315 | 30 |
Study programme Nanotechnology (in English)
Graduates of the second‑cycle Nanotechnology programme possess advanced, specialised knowledge in chemistry, materials science and nanomaterials engineering, covering both the structure and surface of materials as well as their physicochemical properties, functionality and applications in modern technologies. They understand advanced relationships between the structure of nanomaterials and their properties and are able to design materials with defined parameters and functions.
They have highly developed experimental skills, including the synthesis, modification and advanced characterization techniques of nanomaterials, including polymeric and hybrid materials. They can plan and conduct complex experiments, design laboratory procedures and select research methods appropriate for scientific or application‑oriented problems.
They possess advanced analytical competencies, including the ability to use specialised nanostructure characterization methods, multidimensional data analysis (chemometrics), integration of data from multiple measurement techniques, and critical evaluation of the reliability, precision and limitations of obtained results. They can formulate conclusions leading both to scientific interpretation and technological recommendations.
The graduates have well‑developed project competencies, including planning and implementing complex R&D projects, assessing technological risk, evaluating the biocompatibility and toxicity of nanomaterials, and applying standards and regulations governing their use. They can identify technological problems, propose innovative solutions and assess their feasibility, safety and environmental impact.
Thanks to the Research and Development Project module, the graduates are able to independently conduct an R&D project—from problem formulation, through method selection and data analysis, to assessing implementation potential and preparing project documentation. They possess competencies necessary for work in R&D teams and for expert‑level collaboration with industry.
They understand the social, ethical and environmental consequences of using nanomaterials, know the basics of patent law and intellectual property protection, and understand the mechanisms of obtaining funding for research and innovation. They have advanced communication skills, including preparing publications, reports and scientific presentations (also in a foreign language), and can work in interdisciplinary teams and lead group work.
Chair of the Programme Board: prof. dr hab. inż. Piotr Ulański
View full programme description
The programme was approved by Senate Resolution No. 18/2026 of 25 February 2026.
| Course | Number of hours | ECTS points | Form of verification | Obligatory |
|---|---|---|---|---|
Research and Development Project
|
Total number of contact hours: 350 |
30 | Graded assignment | Obligatory subjects to choose from |
| Sum | 350 | 30 |
See additional information
Carrying out a semester-long research or research and development project outside the Lodz University of Technology (university, research institution, company), thematically related to the field of study| Course | Number of hours | ECTS points | Form of verification | Obligatory |
|---|---|---|---|---|
Social, Ethical, and Environmental Aspects of Science
|
Seminar: 30 Lecture: 15 |
3 | Graded assignment | Obligatory |
|
Project work: 15 Lecture: 15 |
2 | Graded assignment | Obligatory |
|
Tutorials: 45 |
2 | Graded assignment | Obligatory |
Diploma Project
|
Seminar: 15 Project work: 50 |
3 | Graded assignment + exam | Obligatory |
Diploma Thesis
|
Diploma Thesis: 0 |
20 | Pass | Obligatory subjects to choose from |
| Sum | 185 | 30 |