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Molecular Science (Master of Science) >>

Molecular nanoscience (MSM-nano)30 ECTS
(englische Bezeichnung: Molecular nanoscience)
(Prüfungsordnungsmodul: Pflichtmodul Molecular Science)

Modulverantwortliche/r: Andreas Hirsch
Lehrende: Andreas Hirsch, Jürgen Schatz, Julien Bachmann, Rainer Fink, Franziska Gröhn, Milan Kivala, Dirk Guldi, Hubertus Marbach


Startsemester: SS 2018Dauer: 2 SemesterTurnus: halbjährlich (WS+SS)
Präsenzzeit: 450 Std.Eigenstudium: 450 Std.Sprache: Englisch

Lehrveranstaltungen:


Empfohlene Voraussetzungen:

Admission to the M. Sc. program Molecular Science or Chemistry

Inhalt:

A1: Concepts in supramolecular chemistry; host-guest chemistry; energetics of supramolecular complexes: experimental methods; templates and self-assembly. Molecular devices. Supramolecular catalysis: principles of supramolecular catalysis, supramolecular metal catalysis, self-assembled catalysts, metal-free catalysis, enzyme mimics, antibodies, imprinted polymers.

A2: Synthesis of n-dimensional nano-materials. Systematic approaches towards nano-particles of defined size and structure are the basis to prepare materials with taylor-made electronic, optical or catalytic properties. The interplay between nano-particles, nano-rods, nano-wires, 2- and 3-dimentional materials are highlighted.

A3: Nanoscaled systems, general issues of microscopic techniques; experimental techniques with nanometer resolution: STM/AFM and 8 related scanning probes; light microscopy, confocal microscopy; electron microscopy (SEM, TEM, FEM/FIM, LEEM, PEEM), x-ray microscopy and synchrotron radiation.

A4: Specific topics in synthesis and analysis of specific molecule-based nanoscale objects

A5: focused topics in fundamental and applied research on nanoscale materials

Lernziele und Kompetenzen:

The students are able

  • to explain the fundamental chemical and physical properties of nano-scale materials

  • to distinguish and to compare some properties, structure and applications of different nanomaterials

  • to describe and to evaluate the major concepts in supramolecular chemistry

  • to explain the general issues of selected microscopic techniques and to evaluate their applications to different materials

  • to prepare and to characterize nano-sized samples (thin films, nano-tubes, molecular materials, nanoparticles) using selected experimental methods and techniques (includes experiment planning and data evaluation)

  • to interpret and to critically summarize measurements results in written (lab report in paper-style format) and partly oral form

  • to get used to perform research-related experiments within a smaller team.

Bemerkung:

Courses of study for which the module is acceptable: M.Sc. Molecular Nanoscience

Organisatorisches:

Frequency of offer: Annually/start of studies is available in summer and winter term Courses “I” in winter term, courses “II” in summer term
A5: LAB Course upon individual appointments with respective contact persons
B1–B3: winter term
B4-B7: summer term


Verwendbarkeit des Moduls / Einpassung in den Musterstudienplan:

  1. Molecular Science (Master of Science)
    (Po-Vers. 2013 | NatFak | Molecular Science (Master of Science) | Pflichtmodul Molecular Science)

Studien-/Prüfungsleistungen:

Molecular Nanoscience (Prüfungsnummer: 30701)

(englischer Titel: Molecular Nanoscience)

Prüfungsleistung, mündliche Prüfung, Dauer (in Minuten): 45, benotet
Anteil an der Berechnung der Modulnote: 100.0 %
weitere Erläuterungen:
Assessment and examinations: Portfolio: PL: Oral examination (45 min, 3 examiners); LAB (SL, AP)
Calculation of the grade for the module: 100% from oral examination

Erstablegung: WS 2018/2019, 1. Wdh.: SS 2019
1. Prüfer: Andreas Hirsch
Termin: 05.12.2018
1. Prüfer: Dirk Guldi
1. Prüfer: Franziska Gröhn
1. Prüfer: Rainer Fink
1. Prüfer: Julien Bachmann

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