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Kabupaten Nias Selatan

Badan Riset dan Inovasi Nasional

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07-11-2022

12-08-2024

1b4da48a-0823-4c48-a189-a03639930009

Dataset Serupa
The Effect of Substrate Heating Temperature upon Spray Pyrolysis Process on the ...

Transparent conductive oxide (TCO) is one of the main components in the dye sens...

The Influence Of Deposition Time And Substrate Temperature Upon Spray Pyrolysis ...

Transparent conducting oxide (TCO) glasses play important role in many recent mo...

The influence of Sb doping on the structural, optical and electrical properties ...

Antimony (Sb) doped tin oxide (ATO) is one transparent material that has gained ...

High figure of merit transparent conducting Sb-doped SnO2 thin films prepared vi...

Doped tin oxide has been studied extensively because of its potential as a repla...

Effect of Fortification Fish Meal on The Physical Characteristic of Sago Noodles

Starch sago different from other types of noodles, such as wheat flour and pasta...

INFORMASI: Data berikut ini masih dalam proses pemenuhan Prinsip SDI.

The Effect Of Various Precursors And Solvents On The Characteristics Of Fluorine-Doped Tin Oxide Conducting Glass Fabricated By Ultrasonic Spray Pyrolysis

Terbatas

Transparent conductive oxide (TCO) glass is one of most important components in dyesensitized solar cell (DSSC) device. In addition to its high electrical conductivity, transparency is another important requirement that must be achieved in fabricating TCO. One TCO film is fluorine-doped tin oxide (FTO), which can be considered as the most promising substitution for indium-doped tin oxide (ITO), since the latter is very expensive. However, the fabrication techniques for TCO film need to be carefully selected; the synthesis parameters must be properly optimized to provide the desired properties. In this work, FTO glass has been fabricated by the ultrasonic spray pyrolisis technique with different precursors, i.e. tin (II) chloride dihydrate (SnCl2.2H2O) and anhydrous tin (IV) chloride (SnCl4), as well as different solvents, i.e. ethanol and methanol. For both conditions, ammonium fluoride (NH4F) was used as the doping compound. The resulting thin films were characterized by use of a scanning electron microscope (SEM), x-ray diffraction (XRD), ultraviolet-visible (UV-Vis) spectroscopy and a four-point probe test. The results of the investigation show that the highest transmittance of 88.3 persen and the lowest electrical resistivity of 8.44×10-5 Ω.cm were obtained with the FTO glass processed with 20 minutes of spray pyrolysis deposition and 300oC substrate heating, using SnCl4 as the precursor and methanol as the solvent. It can be concluded that TCO fabrication with tin chloride precursors and ammonium fluoride doping using ultrasonic spray pyrolisis can be considered as a simple and low cost method, as well as a breakthrough in manufacturing conductive and transparent glass. International Journal of Technology (2017) 7: 1336-1344

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