Double Helical OligoTolans: Models for soluble OLED Polymers - PowerPoint PPT Presentation

1 / 16
About This Presentation
Title:

Double Helical OligoTolans: Models for soluble OLED Polymers

Description:

Can provide electromagnetic shielding of electronic circuits. Can be used as antistatic coating ... Advantages and putative advantages: Conjugated polymer ... – PowerPoint PPT presentation

Number of Views:161
Avg rating:3.0/5.0
Slides: 17
Provided by: siegel
Category:

less

Transcript and Presenter's Notes

Title: Double Helical OligoTolans: Models for soluble OLED Polymers


1
Double Helical Oligo-TolansModels for soluble
OLED Polymers
  • Florian KrausJay S. Siegel

1
2
1 University of Regensburg, Germany
2 University of California, San Diego
2
Conducting Polymers
  • Can provide electromagnetic shielding of
    electronic circuits
  • Can be used as antistatic coating material to
    prevent electrical discharge exposure on
    photographic emulsions
  • Can be used as hole injecting electrodes for
    OLEDS
  • Usage in electroluminescent displays (mobile
    telephones)
  • In use as emissive layer in full-color video
    matrix displays
  • Some are promising for field-effect transistors
    (Usage in supermarket checkouts)
  • Some absorb microwaves stealth technique

3
OLEDs
4
OLEDs - when electrons and holes meet
Jablonski Diagram
5
OLEDs
The principle Through the recombination of holes
and electrons energy is gained and emitted as
visible light. Advantages over liquid
crystals Large surfaces can be covered in
unlimited visual angles.
6
Non-linear Optics
What it is and why we need it
  • The refractive index of an NLO-material can be
    changed drastically by light of high intensity
    (LASER), making it a high speed switch and also a
    high density optical data storage medium.
  • Information storage and transmission goes away
    from the electrical to the optical regime.
    NLO-materials can be cast in any shape, circuits
    can be much smaller (one molecule instead of 200
    nm pattern size in silicon wafers).
  • It is estimated that NLO-computers would have a
    speed and dynamic memory increase of a factor of
    108, corresponding to 40 years of computer
    technology development.

7
Known Structures
Poly(phenyleneethynylene)
  • Advantages
  • Conjugated polymer
  • Organic Light Emitting Device (OLED)
  • Suitable for non-linear optics
  • Disadvantages
  • Practically insoluble
  • Fluorescence is self quenching because of
    p-stacking
  • Air and moisture sensitive

8
Target Polymer
  • Advantages and putative advantages
  • Conjugated polymer
  • OLED, no self quenching alkyl double helix will
    prevent p-stacking
  • Increased solubility
  • Increased air stability
  • Suitable for non-linear optics

9
Models based on Target Polymer
II
I
10
Retrosynthetic Analysis of I
I
11
Retrosynthetic Analysis of II
II
12
Project Status I
13
Project Status I
14
Project Status I
Other approaches
15
Project Status II
II
16
Acknowledgements
F.K. thanks the Siegel group for useful
discussions and Kim Baldridge for ab initio
calculations.
References
  • Heeger, MacDiarmid, Shirakawa, Angewandte Chemie
    Int. Ed., 40, 14, 2001
  • Ziener et al., J. Org. Chem. 1997, 62, 6137-6143
  • Wautelet et al., Macromolecules 1996, 29, 446-455
  • Lee et al., J. Org. Chem. 2001, 66, 7155-7158
Write a Comment
User Comments (0)
About PowerShow.com