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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Lau, Kenneth K. S.
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (4/4 displayed)
- 2015Polarization screening-induced magnetic phase gradients at complex oxide interfacescitations
- 2012Microencapsulation of a crop protection compound by initiated chemical vapor depositioncitations
- 2012Polymer electronic materials for sustainable energies
- 2012Graft polymerization of anti-fouling PEO surfaces by liquid-free initiated chemical vapor depositioncitations
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document
Polymer electronic materials for sustainable energies
Abstract
<p>As electronic devices reduce in size, scale and weight, polymers are becoming more attractive as electronic materials that are lighter weight, easier and lower cost to synthesize, and place less demand on purity. However, device performance is significantly influenced by the ability to properly synthesize polymers and integrate them effectively into devices. Particularly with nanostructured device architectures, conventional liquid phase synthesis and processing face significant limitations due to the presence of the liquid medium. Here, initiated chemical vapor deposition (iCVD) is demonstrated as a viable means for overcoming these barriers, providing a liquid-free approach for the direct synthesis and growth of electronic polymers that yield significantly enhanced performance in energy harvesting and storage devices.</p>