Sains Malaysiana 43(7)(2014):
1061–1067
Deposition
and Characterization of SnSe and CuInSe2 Thin
Films by
Thermal
Evaporation Technique from Synthesized SnSe and CuInSe2 Sources
(Pengenapan dan Pencirian Filem Nipis SnSe dan CuInSe2 dengan Kaedah Penyejatan
Haba Menggunakan SnSe dan CuInSe2 Sebagai Bahan Sumber)
NORDIN SABLI1,
ZAINAL
ABIDIN
TALIB1*,
CHANG
CHUNG
BIN1,
WAN
MAHMOOD
MAT
YUNUS1,
ZULKARNAIN
ZAINAL2,
HIKMAT
S.
HILAL3,
JOSEPHINE
LIEW
YING
CHYI1
& MASATOSHI
FUJII4
1Department of Physics, Universiti Putra Malaysia, 43400 Serdang, Selangor, Malaysia
2Department of Chemistry, Universiti Putra Malaysia, 43400 Serdang, Selangor, Malaysia
3SSERL, Department of Chemistry, An-Najah N. University, PO Box 7, Nablus, West Bank, Palestine
4Masatoshi Fujii, Department of
Molecular Science, School of Medicine
Shimane University, Izumo,
Shimane, 693-8501, Japan
Diserahkan: 2 Julai 2013/Diterima: 13 September 2013
ABSTRACT
Tin selenide (SnSe) and copper indium diselenide (CuInSe2) compounds were synthesized by high temperature
reaction method using combination of sealed ampoule (at relatively low pressure
~10-1 Pa without inert gas) and heating at specific
temperature profile in rocking furnace. Powder X-Ray diffraction analysis
showed that the products involved only single phases of SnSe and of CuInSe2 only. Using the reaction
products as source materials, the SnSe and CuInSe2 thin
films were vacuum-deposited on glass substrates at room temperature.
Structural, elemental, surface morphological and optical properties of the
as-deposited films were studied by X-Ray diffraction (XRD),
energy dispersive X-Ray (EDX) analysis, field emission scanning
electron microscopy (FESEM) and UV-Vis-NIR spectroscopy.
Single phase of SnSe and CuInSe2 films
were obtained by thermal evaporation technique from synthesized SnSe and CuInSe2 compound without further
treatment.
Keywords: CuInSe; SnSe; solid state reaction; source material; thin
films
ABSTRAK
Sebatian timah selenida (SnSe) dan kuprum indium diselenida (CuInSe2) telah disintesis pada tindak balas bersuhu tinggi menggunakan gabungan ampul yang ditutup kedap (pada kadar tekanan rendah ~10-1 Pa tanpa gas lengai) dan pemanasan pada profil suhu khusus dalam relau berayun. Analisis pembelauan sinar-X serbuk mendapati hasil sintesis yang diperolehi adalah SnSe dan CuInSe2 fasa tunggal. Serbuk yang telah disintesis digunakan sebagai bahan sumber untuk menyediakan filem nipis SnSe dan CuInSe2 meggunakan kaedah penyejatan dengan haba di dalam vakum. Kajian sifat struktur, komposisi, morfologi dan optik untuk filem yang dienapkan dijalankan dengan menggunakan pembelauan sinar-X (XRD), analisis penyerakan tenaga sinar-X (EDX), mikroskopi medan pancaran pengimbasan elektron (FESEM) dan spektroskopi UV-Vis-NIR. SnSe and
CuInSe2 fasa tunggal dapat diperoleh tanpa melalui rawatan selanjutnya melalui kaedah penyejatan dengan haba di dalam vakum menggunakan sebatian SnSe dan CuInSe2 yang telah disintesis sebagai bahan sumber.
Kata kunci: Bahan sumber; CuInSe2; filem nipis; SnSe; tindak balas keadaan pepejal
RUJUKAN
Amaraj, L., Jayachandran, M.
& Anjeeviraja, C.S. 2004. Preparation and
characterization of tin diselenide thin film by spray
pyrolysis technique. Materials Research Bulletin 39: 2193-2201.
Banerjee,
R., Jayakrishnan, R., Banerjee, R. & Ayyub, P. 2000. Effect of the
size-induced structural transformation on the band gap in CdS nanoparticles. Journal of Physics: Condensed Matter 12: 10647.
Chakrabarti, R., Maity, A.B., Maity, B., Dutta,
J., Chaudhuri, S. & Pal, A.K. 1996. Effect of Ga incorporation in polycrystalline CulnSe2 films. Vacuum 47: 1371-1378.
Chate, P.A., Hankare, P.P. & Sathe, D.J. 2010. Characterization of cadmium selenide films for photovoltaic applications. Journal of
Alloys of Compounds 505: 140-143.
Devaney,
C.M. 1987. Method for making semiconductor crystal. United States
Patent US Patent 4634493 (November 2010) http://www.freepatentsonline.com/4634493.html.
Fearheiley,
M.L. 1986. The phase relations in the Cu,In,Se system and the growth
of CuInSe2 single crystals. Solar Cells 16: 91-100.
Fray, A.F. & Lloyd, P. 1979. Electrical
and optical properties of thin p-type films prepared by vacuum evaporation
from the chalcopyrite CuInSe2. Thin Solid Films 58:
29-34.
Fujii, M., Kawai,
T. & Kawai, S. 1988. Photoelectrochemical properties of cadmium
chalcogenide thin films prepared by vacuum evaporation. Solar
Energy Materials 18: 23-35.
Haas, V., Gleiter,
H. & Birringer, R. 1993. Synthesis of nanostructured materials by the use of a thermophoretic
forced flux system. Scripta Metallurgica 28: 721-724.
Hasan, M.F., Subhan, M.A. & Mannan,
K.M. 2000. The optical and electrical properties of copper indium
di-selenide thin films. Optical Materials 14: 329-336.
Hilal, H.S., Ismail, R.M.A., El-Hamouz, A.,
Zyoud, A. & Saadeddin, I. 2009. Effect of cooling rate of pre-annealed
CdS thin film electrodes prepared by chemical bath deposition: Enhancement
f photoelectrochemical characterirtics. Electromica Acta54:
3433-3440.
Indirajith, R., Srinivasan, T.P., Ramamurthi,
K. & Gopalakrishnan, R. 2010. Synthesis, deposition and characterization of tin selenide
thin films by thermal evaporation technique. Current Applied
Physics 10: 1402-1406.
John, K.J.,
Pradeep, B. & Mathai, E. 1994. Tin selenide (SnSe) thin films prepared
by reactive evaporation. Journal of Materials Science 29:
1581-1583.
Kheraj, V., Patel, K.K., Patel, S.J. &
Shah, D.V. 2013. Synthesis and characterization of Copper ZIncTin Sulphide
(CZTSe) compound for absorber material in solar-cells. Journal
of Crystal Growth 362: 174-177.
Kim, H., Kim,
J., Jung, W. & Yoon, D. 2009. Effect of starting materials on the
properties of solid-state reacted barium titanate powder. Journal
of Ceramic Processing Research 10: 753-757.
Koch, C.C. 2007. Nanostructured Materials:
Processing, Properties, and Applications. 2nd ed. Norwich, New
York: William Andrew Publishing. pp. 47-90.
Lippens, P.E.
& Lannoo. M. 1989. Calculation of the band gap for small CdS
and ZnS crystallites. Physical Review B 39: 10935-10942.
Muller, J.,
Nowoczin, J. & Schmitt, H. 2006. Composition, structure and
optical properties of sputtered thin films of CuInSe2. Thin Solid
Films 496: 364-370.
Mustafa, F.A. 2013. The structural and
optical characteristics of polyvinylpyrolidone doped with nano crystal
naf films. Natural and Applied Sciences 4: 125-141.
Pandey, R.K., Mishra, S., Tiwari, S.,
Sahu, P. & Chandra, B.P. 2000. Comparative study of performance
of CdTe, CdSe and CdS thin films-based photoelectrochemical solar
cells. Solar Energy Materials & Solar Cells 60: 59-72.
Sabli, N., Talib, Z.A., Yunus, W.M.M., Zainal,
Z., Hilal, H.S. & Fujii, M. 2013. CuZnSnSe thin film electrodes prepared by vacuum evaporation:
Enhancement of surface morphology and photoelectrochemical characteristics
by argon gas. Materials Science Forum 756: 273-280.
Sakata, H. & Ogawa, H. 2000. Optical
and electrical properties of flash-evaporated amorphous culn Sez
films. Solar Energy Materials & Solar Cells 63: 259-265.
Shimura, F. 1989. Basic semiconductor
physics. In Semiconductor Silicon Crystal Technology, edited
by Shimura, F. San Diego: Academic Press. p. 82.
Singh, R.S., Bhushan, S., Singh, A.K.
& Deo, S.R. 2011. Characterization and optical properties of
CdSe nano-crystalline thin films. Digest Journal of Nanomaterials and Biostructures6: 403-412.
Tomakin, M.,
Altunbas, M., Bacaksiz, E. & Celik, S. 2011. Current transport
mechanism in CdS thin films prepared by vacuum evaporation method
at substrate temperatures below room temperature. Thin Solid
Films 520: 2532-2536.
Yamaguchi, T., Kubo, T., Maeda, K.,
Niiyama, S., Imanishi, T. & Wakahara, A. 2009. Fabrication of
Cu2ZnSnS4 thin films by sulfurization process from quaternary compound
for photovoltaic device applications. In Proceedings of the International
Conference on Electrical Engineering, Shenyang, China 5-9 July:
1-4.
Yunos, M.A.S.M., Talib, Z.A., Yunus, W.M.M.,
Sulaiman, M.Y.M., Chyi, J.L.Y. & Paulus, W.S. 2011. X-ray diffraction
analysis of thermally evaporated copper tin selenide thin films
at different annealing temperature. Jurnal Sains Nuklear Malaysia
23: 46-52.
Zainal, Z.,
Nagalingam, S., Kassim, A., Hussein, M.Z. & Yunus, W.M.M. 2003.
Tin selenide thin films prepared through combination of chemical
precipitation and vacuum evaporation technique. Materials Science
21: 225-233.
Zyoud, A., Saa'deddin,
I., Khudruj, S., Hawash, Z.M., Park, D.H., Campet, G. & Hilal,
H.S. 2013. CdS/FTO thin film electrodes deposited by chemical bath
deposition and by electrochemical deposition: A comparative assessment
of photo-electrochemical characteristics. Solid State Sciences
18: 83-90.
*Pengarang untuk surat-menyurat; email:
zainalat@science.upm.edu.my
|