Inhalt

[ 491EPBCSECV19 ] VL Spectroelectrochemistry

Versionsauswahl
Es ist eine neuere Version 2023W dieser LV im Curriculum Master's programme Management in Chemical Technologies (MCT) 2024W vorhanden.
Workload Education level Study areas Responsible person Hours per week Coordinating university
3 ECTS M2 - Master's programme 2. year Chemistry Philipp Stadler 2 hpw Johannes Kepler University Linz
Detailed information
Original study plan Master's programme Chemistry and Chemical Technology (CCT) 2019W
Objectives Fundamental understanding of electrochemical reactions and the corresponding in-situ probing of reactive surfaces by different means of spectroscopy.
Subject Repitition and detailed presentation of electrochemistry. Spectroelectrochemistry starting with UV-vis transmission spectroscopy, reflection spectroscopy (internal, external and total-reflection mode), FTIR and Raman, Ellipsometry. Further X-ray diffraction, photoemission, Mössbauer and other aiding spectroscopic techniques. Refer to actual technological-electrochemical questions such as Li-ion batteries, hydrogen and CO2-recycling.
Criteria for evaluation Interactive elements included in evaluation. Oral examination in front of participants.
Methods Presentation with interactive elements.
Language English
Study material Guideline is a pdf-based scriptum with updates Aiding material: Power point slides, videos and pictures eLearning with moodle and kusss Oral examination based on a question catalogue.
Changing subject? No
Corresponding lecture 700DCHMSPCV15: VL Spektroelektrochemie (3 ECTS)
Earlier variants They also cover the requirements of the curriculum (from - to)
700DCHMSPCV15: VL Spectroelectrochemistry (2015W-2019S)
700PHCHSPCV11: VL Spectroelectrochemistry (2011W-2015S)
On-site course
Maximum number of participants -
Assignment procedure Direct assignment