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Material- and energy-efficient production of ultra-transparent conductive films based on rodlike conductive nanoparticles

Poster presented at ICCG 11 - International Conference on Coatings on Glass and Plastics; Advanced Coatings for Large-Area or High-Volume Products; June 12-16, 2016, Braunschweig, Germany
: Ackermann, Thomas; Sahakalkan, Serhat; Boonen, Laura; Glanz, Carsten; Kolaric, Ivica

Poster urn:nbn:de:0011-n-4132092 (1.5 MByte PDF)
MD5 Fingerprint: 8e2d0ef5c3ae56754fd6833995cb5692
Created on: 13.9.2016

2016, 1 Folie
International Conference on Coatings on Glass and Plastics (ICCG) <11, 2016, Braunschweig>
Poster, Electronic Publication
Fraunhofer IPA ()
nanoparticle; Transparent Conductive Films (TCF); Carbon Nanotube (CNT)

The market for transparent and conductive layers has grown remarkably during the past few years. The key drivers were consumer electronics and photovoltaics. Recent developments show a trend for products which are bendable or have complex 3D surfaces. Such applications need flexible and transparent electrodes. The state of the art materials cannot satisfy the flexibility requirement. Most promising candidates are fibrous conductive materials like nanotubes or nanowires and their hybrids. The main interest of Fraunhofer IPA is to develop processes for coating, patterning and printing of these nanomaterials.