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  4. Fast formation of CdS thin films prepared via the microwave-assisted chemical bath deposition process
 
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Fast formation of CdS thin films prepared via the microwave-assisted chemical bath deposition process

Journal
Thin Solid Films
Journal Volume
645
Pages
64-69
Date Issued
2018
Author(s)
Chen M.-C.
Sung J.-C.
Ou C.-Y.
Som S.
Lu C.-H.  
DOI
10.1016/j.tsf.2017.10.026
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/407339
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85032274365&doi=10.1016%2fj.tsf.2017.10.026&partnerID=40&md5=3d8f13041af6a2a0abccd309d0677db9
Abstract
Cadmium sulfide (CdS) ceramic thin films were successfully synthesized via the microwave-assisted chemical bath deposition process in a short reaction period of 5 min at 65 ¢XC. As long as the molar ratios of thiourea to cadmium sulfide ([TU]/[CdSO4] molar ratios) were below 50, dense CdS films formed on Cu(In,Ga)Se2 absorbers. Upon elevating the [TU]/[CdSO4] molar ratios, a large number of CdS particles precipitated in the bulk solutions, leading to the formation of holes on CdS films and a reduction in the film thickness. These phenomena imply that elevating the concentration of thiourea facilitates homogeneous nucleation and suppresses the growth of CdS films. The photovoltaic properties of Cu(In, Ga)Se2 solar cells were influenced by the different [TU]/[CdSO4] molar ratios. When the [TU]/[CdSO4] molar ratio was 30, a relatively high efficiency of 10.83% was achieved. According to diode analysis, increasing the [TU]/[CdSO4] molar ratios raised the diode factor (A) values. The microwave-assisted chemical bath deposition process was demonstrated to be a potential process for the fast deposition of CdS ceramic thin films. ? 2017 Elsevier B.V.
Subjects
Cadmium sulfide
Chemical bath deposition
Cu(in, Ga)Se2, solar cells
Microwave
SDGs

[SDGs]SDG7

Other Subjects
Cadmium; Cadmium sulfide; Cadmium sulfide solar cells; Ceramic materials; Copper; Copper compounds; Deposition; Gallium; Gallium compounds; Microwaves; Nucleation; Solar cells; Solar power generation; Sulfur compounds; Thin films; Thioureas; Ceramic thin films; Chemical bath deposition process; Chemical-bath deposition; Cu(In , Ga)Se2; Formation of hole; Homogeneous nucleation; Microwave assisted; Photovoltaic property; Cadmium compounds
Type
journal article

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