9360-0138/04 – Experimental Methods and Tools in Nanotechnology II - Physical (EMNN II)

Gurantor departmentCNT - Nanotechnology CentreCredits4
Subject guarantorIng. Ladislav Svoboda, Ph.D.Subject version guarantorIng. Ladislav Svoboda, Ph.D.
Study levelundergraduate or graduate
Study languageEnglish
Year of introduction2019/2020Year of cancellation
Intended for the facultiesFMTIntended for study typesBachelor
Instruction secured by
LoginNameTuitorTeacher giving lectures
SVO401 Ing. Ladislav Svoboda, Ph.D.
VIL0059 Ing. Zuzana Vilamová, Ph.D.
Extent of instruction for forms of study
Form of studyWay of compl.Extent
Full-time Examination 3+0

Subject aims expressed by acquired skills and competences

The aim of the course is to provide students with knowledge and practical skills in the field of spectroscopic and optical methods used for the characterization of nanostructured materials. Students will learn to distinguish between different types of interactions of radiation and particles with nanostructures and, based on these interactions, select appropriate characterization methods. They will develop competencies in the interpretation of spectroscopic data and in the assessment of the electronic, optical, structural, and surface properties of nanomaterials. Students will be able to work with the fundamental principles of UV-VIS, DRS, PL, XRF, UPS, XPS, AES, photoconductivity spectroscopy, EDX, WDX, PAS, and DLS, assess their capabilities and limitations, and appropriately combine these methods for the comprehensive characterization of nanostructures.

Teaching methods

Lectures
Tutorials

Summary

Upon completion of the course, students will understand the fundamental principles of spectroscopic methods based on the excitation of nanostructures by photons, electrons, and positrons, followed by the detection of photons or electrons. Students will be able to describe the principles and applications of UV-VIS absorption spectroscopy, diffuse reflectance spectroscopy (DRS), photoluminescence spectroscopy (PL), X-ray fluorescence spectroscopy (XRF), ultraviolet and X-ray photoelectron spectroscopy (UPS, XPS), Auger electron spectroscopy (AES), photoconductivity spectroscopy, energy-dispersive and wavelength-dispersive X-ray spectroscopy (EDX, WDX), positron annihilation spectroscopy (PAS), and dynamic light scattering (DLS). Students will be able to select an appropriate method with respect to the property of the nanostructure being characterized, correctly interpret basic spectral and experimental data, and assess their information content and limitations. The acquired knowledge will enable students to perform and evaluate the comprehensive characterization of the electronic, optical, chemical, surface, and size-related properties of nanomaterials.

Compulsory literature:

Thomas, S.; Thomas, R.; Zachariah, A. K.; Mishra, R. K. (eds.). Spectroscopic Methods for Nanomaterials Characterization. Elsevier, 2017. Sharma, S. K. (ed.). Handbook of Materials Characterization. Springer, 2018. Beckhoff, B. et al. Traceable Characterization of Nanomaterials by X-ray Spectrometry Using Calibrated Instrumentation. Nanomaterials, 2022, 12, 2255.

Recommended literature:

Kumar, C. S. S. R. (ed.). UV-VIS and Photoluminescence Spectroscopy for Nanomaterials Characterization. Springer, 2013. Zhang, J. Z. Optical Properties and Spectroscopy of Nanomaterials. World Scientific, 2009. Tantra, R. Nanomaterial Characterization: An Introduction. Wiley, 2016. Kirkland, A. I.; Haigh, S. J. (eds.). Nanocharacterisation. Royal Society of Chemistry, 2015.

Additional study materials

Way of continuous check of knowledge in the course of semester

Oral exam with written preparation

E-learning

Other requirements

Systematic off-class study.

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.

Subject syllabus:

1. Excitation of Nanostructures by Photons – Photon–Photon Spectroscopy (UV-VIS spectroscopy, DRS – diffuse reflectance spectroscopy, PL – photoluminescence spectroscopy, XRF – X-ray fluorescence spectroscopy) 2. Excitation of Nanostructures by Photons – Photon–Electron Spectroscopy (UPS – ultraviolet photoelectron spectroscopy, XPS – X-ray photoelectron spectroscopy, X-AES – Auger electron spectroscopy, PS – photoconductivity spectroscopy) 3. Excitation of Nanostructures by Electrons – Electron–Photon Spectroscopy (EDX – energy-dispersive X-ray spectroscopy, WDX – wavelength-dispersive X-ray spectroscopy) 4. Excitation of Nanostructures by Positrons – Positron–Photon Spectroscopy (PAS – positron annihilation spectroscopy) 5. Excitation of Nanostructures by Electrons – Electron–Electron Spectroscopy (E-AES – Auger electron spectroscopy) 6. Dynamic Light Scattering by Nanoparticles (DLS – dynamic light scattering)

Conditions for subject completion

Full-time form (validity from: 2019/2020 Winter semester)
Task nameType of taskMax. number of points
(act. for subtasks)
Min. number of pointsMax. počet pokusů
Examination Examination 100  51 3
Mandatory attendence participation: 95 % of attendance at lectures and seminars

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Conditions for subject completion and attendance at the exercises within ISP:

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Occurrence in study plans

Academic yearProgrammeBranch/spec.Spec.ZaměřeníFormStudy language Tut. centreYearWSType of duty
2026/2027 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan
2025/2026 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan
2024/2025 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan
2023/2024 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan
2022/2023 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan
2021/2022 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan
2020/2021 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan
2019/2020 (B0719A270002) Nanotechnology EMN P English Ostrava 3 Compulsory study plan

Occurrence in special blocks

Block nameAcademic yearForm of studyStudy language YearWSType of blockBlock owner
FMT+9360 2021/2022 Full-time English Optional 600 - Faculty of Materials Science and Technology - Dean's Office stu. block
FMT+9360 2021/2022 Full-time English Optional 600 - Faculty of Materials Science and Technology - Dean's Office stu. block
FMT+9360 2020/2021 Full-time English Optional 600 - Faculty of Materials Science and Technology - Dean's Office stu. block
FMT-new subjects 2019/2020 Full-time English Optional 600 - Faculty of Materials Science and Technology - Dean's Office stu. block

Assessment of instruction

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