top of page

High-end CVDs for flexible electronics

- Oxidative CVD (o-CVD)

- Initiative CVD (i-CVD)

Please reload

Customers' Publications
  1. Lee et al., "Nanostructured unsubstituted polythiophene films deposited using oxidative chemical vapor deposition: hopping conduction and thermal stability" Advanced Materials Interfaces (2018) (DOI: 10.1002/admi.201701513)

  2. Lee et al., “Air-stable polythiophene-based thin film transistors processed using oxidative chemical vapor deposition: carrier transport and channel/metallization contact interface” Organic Electronics, 33, 253-262 (2016) 

  3. Lee et al., “Enhanced optical property with tunable band gap of cross-linked amorphous PEDOT copolymers via oxidative chemical vapor deposition” Advanced Functional Materials, 25, 85-93 (2015)

  4. Chen et al., “Low-substrate-temperature Encapsulation for Flexible Electrodes and Organic Photovoltaics” Advanced Energy Materials, 5, 1401442 (2015)

  5. Lee et al., “Heavily doped poly(3,4-ethylenedioxythiophene) thin films with high carrier mobility deposited using oxidative CVD: conductivity stability and carrier transport” Advanced Functional Materials, 24, 7187–7196 (2014)

  6. Borrelli et al., “Optoelectronic properties of polythiophene thin films and organic TFTs fabricated by oxidative chemical vapor deposition” Journal of Materials Chemistry C, 2, 7223-7231 (2014)

Call

T: 1-844-JSNANO-1

    (1-844-576-2661)  

F: 1-408-432-5020 

Contact

contact@jsnano.net

3003 N. 1st Street

San Jose CA 95134 USA 

Follow me

 

  • White LinkedIn Icon
  • facebook
  • Twitter Clean
  • White Google+ Icon

© 2015-2022 by

JS Nanotechnologies, LLC

bottom of page