CHE.05564.06 - Advanced Polymer Chemistry (Complete module description)

CHE.05564.06 - Advanced Polymer Chemistry (Complete module description)

Original version English
CHE.05564.06 10 CP
Module label Advanced Polymer Chemistry
Module code CHE.05564.06
Semester of first implementation
Faculty/Institute Institut für Chemie
Module used in courses of study / semesters
  • Polymer Materials Science (MA120 LP) (Master) > Werkstofftechnik PolymerMaterialScMA120, Version of accreditation valid from WS 2014/15 > Polymer Science *
Responsible person for this module
Further responsible persons
Prof. Dr. Wolfgang Binder
Prerequisites
Skills to be acquired in this module
  • Student gain fundamentals in advanced theoretical and practical knowledge of polymerization techniques.
  • They will be enabled to carry out special living/controlled and catalytic polymerizations, enzymatic and biological polymer synthesis, and preparation of polymer/drug conjugates.
  • They learn to use advanced characterization techniques and in vivo and in vitro testing of polymers.
Module contents
This module covers advanced methods of polymer synthesis (lecture 1: Advanced Polymer Synthesis) and polymer characterization on molecular level (lecture 2: Polymer Analytics). The Lab course Polymer Synthesis Lab gives the students the opportunity to perform their own syntheses.
Lecture:
1. Advanced Polymer Synthesis
  • Detailed description of standard polymerization techniques like living polymerization methods (CRP, LCCP, living anionic polymerization), ring opening polymerization ROP, ROMP), polymer analogous reactions for tailoring polymer properties, emulsion polymerization
  • Detailed description of how to achieve advanced polymeric materials, variation of polymeric architectures, e.g., synthesis of block copolymers, grafted polymers, supramolecular polymers,vitrimeric polymers, design of shape memory polymers
  • Polymers in energy engineering
  • Polymer degradation and novel recycling methodologies
  • Polymers and their use in microelectronics
  • Polymers and their application in medicine
  • Biopolymers, their biosynthesis and their technological use.
  • Description of the main analytical techniques in polymer science, with a detailed study of NMR, GPC and MS techniques, discussion of practical application of techniques to polymer molecules
2. Polymer Analytics
  • Description and practical experience in thermal, mechanical and stability-analysis of polymers (DSC, TGA, DTMA, melt-rheology).
  • NMR-spectroscopy: solution NMR, basic techniques, sensitivity, heteronuclear-NMR, basic 2D-techniques, relaxation in marcomolecules, training and discussion of chemical shift analysis, spin/spin-coupling patterns, coupling constants in relation to chemical structure, isotopic patterns and molecular weight, determination of exact chemical structures, discussion of 2D-COSY-spectroscopy and practical analysis
  • MS-analytical methods (MALDI-TOF; ESI-TOF; TOF/TOF) for the analytics of synthetic and biopolymers
  • Advanced GPC/HLPC chromatography: 2D-methods in relation to polarity and coupling techniques, influence of solvents and columns, interpretation of elution times
Lab course:
1. Polymer Synthesis Lab
  • Independent personal execution of polymerization experiments. The method (Ionic polymerization, Living polymerization (ATRP, NMP, LCCP)) will vary due to lab capacity.
  • Multiple step polymerization techniques are performed, e.g. to obtain polymers with special magnetic and electric properties, solution properties, or general block copolymers
  • Analytics of polymers (structural analytics and materials analytics such as NMR, MS-, SEC, TGA, DSC, melt-rheology, 3D printing)
Forms of instruction Lecture (1 SWS)
Seminar (1 SWS)
Practical training (5 SWS)
Lecture (1 SWS)
Course
Languages of instruction German, English
Duration (semesters) 1 Semester Semester
Module frequency jedes Sommersemester
Module capacity unlimited
Time of examination
Credit points 10 CP
Share on module final degree Course 1: %; Course 2: %; Course 3: %; Course 4: %; Course 5: %.
Share of module grade on the course of study's final grade 1
Module course label Course type Course title SWS Workload of compulsory attendance Workload of preparation / homework etc Workload of independent learning Workload (examination and preparation) Sum workload
Course 1 Lecture Lecture Advanced Polymer Synthesis 1 0
Course 2 Seminar Seminar Advanced Polymer Synthesis 1 0
Course 3 Practical training Lab course Polymer Synthesis 5 0
Course 4 Lecture Lecture Polymer Analytics 1 0
Course 5 Course Private study 0
Workload by module 300 300
Total module workload 300
Examination Exam prerequisites Type of examination
Course 1
Course 2
Course 3
Course 4
Course 5
Final exam of module
completed lab course protocols and lab-safety examinations, seminar problem set solutions
oral or written examination (Advanced Polymer Synthesis, Polymer Analytics)
Exam repetition information
Prerequisites and conditions Prerequisites Frequency Compulsory attendance Share on module grade in percent
Course 1 Summer semester No %
Course 2 Summer semester No %
Course 3 Summer semester No %
Course 4 Summer semester No %
Course 5 Summer semester No %