Abstract
We are now developing a new electrostatic 3D printer. We are now applying the 3D printer for fabricating the 3D cell structure in biotechnology and the dye-sensitized solar cell (DSC). The 3D printer is based on electrostatic Inkjet printer. In this case, the nozzle was fdled with the titania paste. The plate electrode was set under the nozzle. When the high voltage was applied between the nozzle and the plate electrode, small droplets were ejected from the nozzle because of balance among the high electrostatic force, gravity force, and the surface tension and the titania layer was formed. The thickness of the titania layer was controlled by the printing time, the applied voltage, and the air gap. The titania layer had many cavities. In this paper, we investigated fundamental characteristics of the nano porous titania layer. With the nano porous titania layer, the surface of the titania layer was increased, and the efficiency was higher than the solid titania layer that was fabricated utilizing doctor blade method. SEM and another experiment was applied to investigate the nano porous titania layer.
Original language | English |
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Title of host publication | International Conference on Digital Printing Technologies |
Publisher | Society for Imaging Science and Technology |
Pages | 201-203 |
Number of pages | 3 |
Volume | 2015-January |
ISBN (Print) | 9780892083169 |
Publication status | Published - 2015 |
Event | 31st International Conference on Digital Printing Technologies and Digital Fabrication 2015, NIP 2015 - Portland, United States Duration: 2015 Sept 27 → 2015 Oct 1 |
Other
Other | 31st International Conference on Digital Printing Technologies and Digital Fabrication 2015, NIP 2015 |
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Country/Territory | United States |
City | Portland |
Period | 15/9/27 → 15/10/1 |
ASJC Scopus subject areas
- Media Technology
- Computer Science Applications