MLU
PHY.05563.03 - Polymer Physics (Vollständige Modulbeschreibung)
Originalfassung Englisch
PHY.05563.03 10 CP
Modulbezeichnung Polymer Physics
Modulcode PHY.05563.03
Semester der erstmaligen Durchführung
Fachbereich/Institut Institut für Physik
Verwendet in Studiengängen / Semestern
  • Polymer Materials Science (MA120 LP) (Master) > Werkstofftechnik PolymerMaterialScMA120, Akkreditierungsfassung gültig ab WS 2014/15 > Pflichtmodule
Modulverantwortliche/r
Weitere verantwortliche Personen
Prof. Dr. Kay Saalwächter
Teilnahmevoraussetzungen
Kompetenzziele
  • The students become acquainted with the fundamental concepts of experimental polymer physics.
  • They learn and apply the theoretical fundamentals and the experimental physical methods used to characterize and investigate polymer materials.
  • They gain practical experience with basic methods in experimental polymer physics.
  • They will understand the properties of polymer surfaces.
  • They receive the knowledge on methods and technologies to modify and analyze polymer surfaces.
Modulinhalte
This module covers basic topics of polymer physics. The lectures Introduction to Polymer Physics and Polymer Surface Science give an overview over the broad spectrum of physical aspects of polymeric samples. The lab course Polymer Physical Lab accompanies the lectures and show the examples of the different characterization methods.
Lectures:
1. Introduction to Polymer Physics
  • Structure of single chains (ideal vs. real chains, scattering, semidilute solutions and melts)
  • Mechanical properties of polymers (liquids vs. solids, rubber elasticity, viscoelasticity, relaxation processes in polymer melts, Debye relaxation, flow behavior, time-temperature superposition and glass transition)
  • Molecular structure and weight distributions (chemical structure, architecture, polymerization processes, determination of structures and molecular weights)
  • Microscopic models for polymer dynamics (viscosity and diffusion, Rouse model, entanglements and reptation)
  • Thermodynamics of solutions and melts (dilute and semidilute solutions, Flory-Huggins theory, kinetics of phase separation, block copolymers, semicrystalline polymers)
2. Polymer Surface Science
  • Surface vs. bulk
  • Surface composition and ordering
  • Dynamic surface processes (adsorption, desorption, diffusion)
  • Surface tension
  • Surface analysis (XPS, SIMS, SEM, AFM)
  • Surface modification by deposition (wet processes, dry processes, CVD, PE-CVD, PVD), polymer film growth
  • Surface modification and functionalization (wet and dry etching, grafting, plasma treatment)
  • Polymer in lithography
  • Technical applications for surface modification
Lab course:
1. Lab course Polymer Physical Lab e.g.
  • Rheology/mechanical spectroscopy
  • DSC
  • Polarization microscopy
Lehrveranstaltungsformen Vorlesung (3 SWS)
Vorlesung (2 SWS)
Praktikum (1 SWS)
Seminar (1 SWS)
Kursus
Unterrichtsprachen Deutsch, Englisch
Dauer in Semestern 1 Semester Semester
Angebotsrhythmus Modul jedes Sommersemester
Aufnahmekapazität Modul unbegrenzt
Prüfungsebene
Credit-Points 10 CP
Modulabschlussnote LV 1: %; LV 2: %; LV 3: %; LV 4: %; LV 5: %.
Faktor der Modulnote für die Endnote des Studiengangs 1
Modulveran­staltung Lehrveranstaltungs­form Veranstaltungs­titel SWS Workload Präsenz Workload Vor- / Nach­bereitung Workload selbstge­staltete Arbeit Workload Prüfung incl. Vorbereitung Workload Summe
LV 1 Vorlesung Lecture Introduction to Polymer Physics 3 0
LV 2 Vorlesung Lecture Polymer Surface Science 2 0
LV 3 Praktikum Lab Course Polymer Physics Lab 1 0
LV 4 Seminar Seminar Introduction to Polymer Physics 1 0
LV 5 Kursus Private study 0
Workload modulbezogen 300 300
Workload Modul insgesamt 300
Prüfung Prüfungsvorleistung Prüfungsform
LV 1
LV 2
LV 3
LV 4
LV 5
Gesamtmodul
completed lab course protocols, written examination and seminar problem set solutions `Polymer Physics`, written examination `Polymer Surface Science`
oral examination
Wiederholungsprüfung
Regularien Teilnahme­voraussetzungen Angebots­rhythmus Anwesenheits­pflicht Gewicht an Modulnote in %
LV 1 Sommersemester Nein %
LV 2 Sommersemester Nein %
LV 3 Sommersemester Nein %
LV 4 Sommersemester Nein %
LV 5 Sommersemester Nein %