The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath Deposition

This research prepared a TiO2, ZnS, and ZnS-TiO2 film on a carbon fiber, to produce TiO2/C-fiber, ZnS-C-fiber, and ZnS-TiO2/C-fiber by Chemical Bath Deposition (CBD). Results show that TiO2/C-fiber consist of anatase at 2θ 25.3 o and 54.6 o, rutile at 2θ 43.5 o and a carbon characteristic peak at 2θ...

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Main Authors: Rahmawati Fitria, Putri Fatmawati R., Masykur Abu
Format: Article
Language:English
Published: De Gruyter 2019-04-01
Series:Open Chemistry
Subjects:
Online Access:http://www.degruyter.com/view/j/chem.2019.17.issue-1/chem-2019-0011/chem-2019-0011.xml?format=INT
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spelling doaj-28e70fb7a1fa4db288e0b12e1dd5ede62020-11-25T03:15:03ZengDe GruyterOpen Chemistry2391-54202019-04-0117113214110.1515/chem-2019-0011chem-2019-0011The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath DepositionRahmawati Fitria0Putri Fatmawati R.1Masykur Abu2Research Group of Solid State Chemistry & Catalysis, Chemistry Department, Sebelas Maret University, Jl. Ir. Sutami 36 A KentinganSurakarta, Indonesia57126Research Group of Solid State Chemistry & Catalysis, Chemistry Department, Sebelas Maret University, Jl. Ir. Sutami 36 A KentinganSurakarta, Indonesia57126Research Group of Analytical Chemistry, Chemistry Department, Sebelas Maret University, Jl.Ir. Sutami 36 A KentinganSurakarta, Indonesia57126This research prepared a TiO2, ZnS, and ZnS-TiO2 film on a carbon fiber, to produce TiO2/C-fiber, ZnS-C-fiber, and ZnS-TiO2/C-fiber by Chemical Bath Deposition (CBD). Results show that TiO2/C-fiber consist of anatase at 2θ 25.3 o and 54.6 o, rutile at 2θ 43.5 o and a carbon characteristic peak at 2θ of 24.5 o. Meanwhile, the characteristic peaks of ZnS on ZnS-TiO2/C-fiber present at 2θ of 27.91 o and 54.58 o. TiO2/C-fiber has a band gap energy of 3.60 eV, the ZnS/C-fiber of 3.73 eV; when those two catalyst combine, the gap energy is 3.15 eV indicating the interface charge transfer between ZnS-TiO2. Photocatalytic treatment of an isopropanol solution with TiO2/C-fiber as a catalyst and under UV light radiation present results peaks at 222- 224 nm and 265 nm, indicating the electronic transition of acetone. Meanwhile, the isopropanol degradation with ZnS-TiO2/C-fiber produced a new peak at 234-237 nm. The Quantum Yield, QY, of ZnS-TiO2/C-fiber is 6.96 x 10-4, higher than TiO2/C-fiber, i.e., 0.42 x 10-4. It indicates that ZnS provides a significant role in the photocatalytic activity through a red shift of light response and decreasing electron-hole recombination.http://www.degruyter.com/view/j/chem.2019.17.issue-1/chem-2019-0011/chem-2019-0011.xml?format=INTcarbon fibertio2/c-fiberzns-tio2/c-fiberphoto catalytic activity
collection DOAJ
language English
format Article
sources DOAJ
author Rahmawati Fitria
Putri Fatmawati R.
Masykur Abu
spellingShingle Rahmawati Fitria
Putri Fatmawati R.
Masykur Abu
The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath Deposition
Open Chemistry
carbon fiber
tio2/c-fiber
zns-tio2/c-fiber
photo catalytic activity
author_facet Rahmawati Fitria
Putri Fatmawati R.
Masykur Abu
author_sort Rahmawati Fitria
title The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath Deposition
title_short The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath Deposition
title_full The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath Deposition
title_fullStr The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath Deposition
title_full_unstemmed The Photocatalytic Activity of Zns-TiO2 on a Carbon Fiber Prepared by Chemical Bath Deposition
title_sort photocatalytic activity of zns-tio2 on a carbon fiber prepared by chemical bath deposition
publisher De Gruyter
series Open Chemistry
issn 2391-5420
publishDate 2019-04-01
description This research prepared a TiO2, ZnS, and ZnS-TiO2 film on a carbon fiber, to produce TiO2/C-fiber, ZnS-C-fiber, and ZnS-TiO2/C-fiber by Chemical Bath Deposition (CBD). Results show that TiO2/C-fiber consist of anatase at 2θ 25.3 o and 54.6 o, rutile at 2θ 43.5 o and a carbon characteristic peak at 2θ of 24.5 o. Meanwhile, the characteristic peaks of ZnS on ZnS-TiO2/C-fiber present at 2θ of 27.91 o and 54.58 o. TiO2/C-fiber has a band gap energy of 3.60 eV, the ZnS/C-fiber of 3.73 eV; when those two catalyst combine, the gap energy is 3.15 eV indicating the interface charge transfer between ZnS-TiO2. Photocatalytic treatment of an isopropanol solution with TiO2/C-fiber as a catalyst and under UV light radiation present results peaks at 222- 224 nm and 265 nm, indicating the electronic transition of acetone. Meanwhile, the isopropanol degradation with ZnS-TiO2/C-fiber produced a new peak at 234-237 nm. The Quantum Yield, QY, of ZnS-TiO2/C-fiber is 6.96 x 10-4, higher than TiO2/C-fiber, i.e., 0.42 x 10-4. It indicates that ZnS provides a significant role in the photocatalytic activity through a red shift of light response and decreasing electron-hole recombination.
topic carbon fiber
tio2/c-fiber
zns-tio2/c-fiber
photo catalytic activity
url http://www.degruyter.com/view/j/chem.2019.17.issue-1/chem-2019-0011/chem-2019-0011.xml?format=INT
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