Detlef Günther: Catalogue data in Autumn Semester 2016 |
Name | Prof. Dr. Detlef Günther |
Name variants | Detlef Günther Detlef Guenther Detlef Gunther |
Field | Spurenelement- und Mikroanalytik |
Address | Spurenelement- und Mikroanalytik ETH Zürich, HCI G 113 Vladimir-Prelog-Weg 1-5/10 8093 Zürich SWITZERLAND |
Telephone | +41 44 632 46 87 |
guenther@inorg.chem.ethz.ch | |
Department | Chemistry and Applied Biosciences |
Relationship | Full Professor |
Number | Title | ECTS | Hours | Lecturers | |
---|---|---|---|---|---|
529-0043-00L | Analytical Strategy | 7 credits | 3G | R. Zenobi, M. Badertscher, P. S. Dittrich, D. Günther | |
Abstract | Problem-oriented development of analytical strategies and solutions. | ||||
Learning objective | Ability to create solutions for particular analytical problems. | ||||
Content | Individual development of strategies for the optimal application of chemical, biochemical, and physico-chemical methods in analytical chemistry solving predefined problems. Experts from industry and administration present particular problems in their field of activity. Principles of sampling. Design and application of microanalytical systems. | ||||
Lecture notes | Copies of problem sets and solutions will be distributed free fo charge | ||||
Prerequisites / Notice | Prerequisites: 529-0051-00 "Analytical Chemistry I (3. Semester)" 529-0058-00 "Analytical Chemistry II (4. Semester)" (or equivalent) | ||||
529-0051-AAL | Analytical Chemistry I Enrolment ONLY for MSc students with a decree declaring this course unit as an additional admission requirement. Any other students (e.g. incoming exchange students, doctoral students) CANNOT enrol for this course unit. | 3 credits | 6R | D. Günther, R. Zenobi | |
Abstract | Introduction into the most important spectroscopical methods and their applications to gain structural information. | ||||
Learning objective | Knowledge about the necessary theoretical background of spectroscopical methods and their practical applications | ||||
Content | Application oriented basics of organic and inorganic instrumental analysis and of the empirical employment of structure elucidation methods: Mass spectrometry: Ionization methods, mass separation, isotope signals, rules of fragmentation, rearrangements. NMR spectroscopy: Experimental basics, chemical shift, spin-spin coupling. IR spectroscopy: Revisiting topics like harmonic oscillator, normal vibrations, coupled oscillating systems (in accordance to the basics of the related lecture in physical chemistry); sample preparation, acquisition techniques, law of Lambert and Beer, interpretation of IR spectra; Raman spectroscopy. UV/VIS spectroscopy: Basics, interpretation of electron spectra. Circular dichroism (CD) und optical rotation dispersion (ORD). Atomic absorption, emission, and X-ray fluorescence spectroscopy: Basics, sample preparation. | ||||
Lecture notes | Script will be for the production price | ||||
Literature | - R. Kellner, J.-M. Mermet, M. Otto, H. M. Widmer (Eds.) Analytical Chemistry, Wiley-VCH, Weinheim, 1998; - D. A. Skoog und J. J. Leary, Instrumentelle Analytik, Springer, Heidelberg, 1996; - M. Hesse, H. Meier, B. Zeeh, Spektroskopische Methoden in der organischen Chemie, 5. überarbeitete Auflage, Thieme, Stuttgart, 1995 - E. Pretsch, P. Bühlmann, C. Affolter, M. Badertscher, Spektroskopische Daten zur Strukturaufklärung organischer verbindungen, 4. Auflage, Springer, Berlin/Heidelberg, 2001- Kläntschi N., Lienemann P., Richner P., Vonmont H: Elementanalytik. Instrumenteller Nachweis und Bestimmung von Elementen und deren Verbindungen. Spektrum Analytik, 1996, Hardcover, 339 S., ISBN 3-86025-134-1. | ||||
Prerequisites / Notice | Excercises are integrated in the lectures. In addition, attendance in the lecture 529-0289-00 "Instrumental analysis of organic compounts" (4th semester) is recommended. | ||||
529-0051-00L | Analytical Chemistry I | 3 credits | 3G | D. Günther, M.‑O. Ebert, R. Zenobi | |
Abstract | Introduction into the most important spectroscopical methods and their applications to gain structural information. | ||||
Learning objective | Knowledge about the necessary theoretical background of spectroscopical methods and their practical applications | ||||
Content | Application oriented basics of organic and inorganic instrumental analysis and of the empirical employment of structure elucidation methods: Mass spectrometry: Ionization methods, mass separation, isotope signals, rules of fragmentation, rearrangements. NMR spectroscopy: Experimental basics, chemical shift, spin-spin coupling. IR spectroscopy: Revisiting topics like harmonic oscillator, normal vibrations, coupled oscillating systems (in accordance to the basics of the related lecture in physical chemistry); sample preparation, acquisition techniques, law of Lambert and Beer, interpretation of IR spectra; Raman spectroscopy. UV/VIS spectroscopy: Basics, interpretation of electron spectra. Circular dichroism (CD) und optical rotation dispersion (ORD). Atomic absorption, emission, and X-ray fluorescence spectroscopy: Basics, sample preparation. | ||||
Lecture notes | Script will be for the production price | ||||
Literature | - R. Kellner, J.-M. Mermet, M. Otto, H. M. Widmer (Eds.) Analytical Chemistry, Wiley-VCH, Weinheim, 1998; - D. A. Skoog und J. J. Leary, Instrumentelle Analytik, Springer, Heidelberg, 1996; - M. Hesse, H. Meier, B. Zeeh, Spektroskopische Methoden in der organischen Chemie, 5. überarbeitete Auflage, Thieme, Stuttgart, 1995 - E. Pretsch, P. Bühlmann, C. Affolter, M. Badertscher, Spektroskopische Daten zur Strukturaufklärung organischer verbindungen, 4. Auflage, Springer, Berlin/Heidelberg, 2001- Kläntschi N., Lienemann P., Richner P., Vonmont H: Elementanalytik. Instrumenteller Nachweis und Bestimmung von Elementen und deren Verbindungen. Spektrum Analytik, 1996, Hardcover, 339 S., ISBN 3-86025-134-1. | ||||
Prerequisites / Notice | Excercises are integrated in the lectures. In addition, attendance in the lecture 529-0289-00 "Instrumental analysis of organic compounts" (4th semester) is recommended. | ||||
529-0141-00L | Physical Methods for Inorganic Chemistry | 6 credits | 3G | D. Günther, J. Koch, R. Verel, M. D. Wörle | |
Abstract | Introduction into the important methods for structural analysis (solid state NMR), crystal structure analysis and surface analysis techniques and their applications | ||||
Learning objective | Knowledge in solid state NMR, crystal structure analysis and surface analytical techniques relevant for inorganic materials | ||||
Content | This lecture course consists of three parts 1) Solid state NMR 2) Surface and direct solid analysis 3) Crystal structure anaylsis. Most important fundamentals of the individual methods will be presented and details will be explained on most relevant inorganic applications | ||||
Lecture notes | Will be given during the lectures | ||||
529-0169-00L | Instrumental Analysis | 0 credits | 2S | D. Günther | |
Abstract | Group seminar on elemental analysis and isotope ratio determinations using various plasma sources | ||||
Learning objective | |||||
Content | Developments in plasma mass spectrometry and alternative plasma sources | ||||
529-0199-00L | Inorganic and Organometallic Chemistry | 0 credits | 2K | C. Copéret, H. Grützmacher, D. Günther, M. Kovalenko, A. Mezzetti, A. Togni | |
Abstract | |||||
Learning objective |