
High-end CVDs for flexible electronics
- Oxidative CVD (o-CVD)
- Initiative CVD (i-CVD)
Customers' Publications
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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)
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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)
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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)
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Chen et al., “Low-substrate-temperature Encapsulation for Flexible Electrodes and Organic Photovoltaics” Advanced Energy Materials, 5, 1401442 (2015)
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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)
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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)
