The feasibility of low-temperature fabrication of transparent electrode elements from thin films of antimony-doped tin oxide (SnO2:Sb, ATO) has been investigated via inkjet printing, rf magnetron sputtering and post-deposition excimer laser processing. Laser processing of thin films on both glass and plastic substrates was performed using a Lambda Physik 305i excimer laser, with fluences in the range 20–100 mJ cm− 2 reducing sheet resistance from as-deposited values by up to 3 orders of magnitude. This is consistent with TEM analysis of the films that shows a densification of the upper 200 nm of laser-processed regions
Transparent electronics has been considered as a critical key to solve problems exhibited by virtual...
Transparent metal oxides are one of the most promising material systems for thin film flexible elect...
Transparent conducting films (TCFs) are films of optically transparent and electrically conductive m...
The feasibility of low-temperature fabrication of transparent electrode elements from thin films of ...
Antimony doped Tin oxide (SnO2:Sb, or ATO) is of interest as an alternative to Indium Tin Oxide (ITO...
Technology to fabricate electrically-conducting, transparent thin-film patterns on flexible substrat...
© 2019, The Author(s). Tin doped indium oxide (ITO) thin films provide excellent transparency and co...
Transparent electrically conducting SnO2:Sb coatings have been prepared by the sol-gel dip-coating p...
Here we present the deposition of antimony-doped tin oxide thin films using the ambient spray pyroly...
Transparent conducting films based on novel materials have been laser processed on glass and flexibl...
Tin oxide is a multifunctional semiconductor that offers excellent capabilities in a variety of appl...
Transparent conducting oxides are fundamental for the fabrication of optoelectronic devices includin...
We fabricated undoped and Sb-doped SnO2 thin films on glass substrates by a pulsed laser deposition ...
High quality transparent conductive oxides (TCOs) often require a high thermal budget fabrication pr...
Recently, flexible electronics have received the attention of many researchers. Among the various fa...
Transparent electronics has been considered as a critical key to solve problems exhibited by virtual...
Transparent metal oxides are one of the most promising material systems for thin film flexible elect...
Transparent conducting films (TCFs) are films of optically transparent and electrically conductive m...
The feasibility of low-temperature fabrication of transparent electrode elements from thin films of ...
Antimony doped Tin oxide (SnO2:Sb, or ATO) is of interest as an alternative to Indium Tin Oxide (ITO...
Technology to fabricate electrically-conducting, transparent thin-film patterns on flexible substrat...
© 2019, The Author(s). Tin doped indium oxide (ITO) thin films provide excellent transparency and co...
Transparent electrically conducting SnO2:Sb coatings have been prepared by the sol-gel dip-coating p...
Here we present the deposition of antimony-doped tin oxide thin films using the ambient spray pyroly...
Transparent conducting films based on novel materials have been laser processed on glass and flexibl...
Tin oxide is a multifunctional semiconductor that offers excellent capabilities in a variety of appl...
Transparent conducting oxides are fundamental for the fabrication of optoelectronic devices includin...
We fabricated undoped and Sb-doped SnO2 thin films on glass substrates by a pulsed laser deposition ...
High quality transparent conductive oxides (TCOs) often require a high thermal budget fabrication pr...
Recently, flexible electronics have received the attention of many researchers. Among the various fa...
Transparent electronics has been considered as a critical key to solve problems exhibited by virtual...
Transparent metal oxides are one of the most promising material systems for thin film flexible elect...
Transparent conducting films (TCFs) are films of optically transparent and electrically conductive m...