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DHARMADASA, I, ECHENDU, O. K., FAUZI, F., SALIM, H. I., ABDUL-MANAF, N. A., JASINSKI, J. B., SHEREHIY, A. and SUMANASEKERA, G.
(2016).
Study of Fermi level movement during CdCl2 treatment of CdTe thin films using Ultra-violet Photoemission Spectroscopy.
Journal of Materials Science: Materials in Electronics, 27 (5), 5039-5046.
[Article]
ECHEND, O.K., MBAMARA, U.S., OKEOMA, K.B., IROEGBU, C., MADU, C. A., NDUKWE, I.C. and DHARMADASA, I.M.
(2016).
Effects of deposition time and post-deposition annealing on the physical and chemical properties of electrodeposited CdS thin films for solar cell application.
Journal of Materials Science: Materials in Electronics, 27 (10), 10180-10191.
[Article]
SALIM, H. I., OLUSOLA, O. I., OJO, A. A., URASOV, K. A., DERGACHEVA, M. B. and DHARMADASA, I
(2016).
Electrodeposition and characterisation of CdS thin films using thiourea precursor for application in solar cells.
Journal of Materials Science: Materials in Electronics, 27 (7), 6786-6799.
[Article]
Public
ABDUL-MANAF, N.A., WEERASINGHE, A.R., ECHENDU, O. K. and DHARMADASA, I. M.
(2015).
Electro-plating and characterisation of cadmium sulphide thin films using ammonium thiosulphate as the sulphur source.
Journal of Materials Science: Materials in Electronics, 26 (4), 2418-2429.
[Article]
AL-HASHIMI, Mohammed, KADEM, Burak, RAHAQ, Yaqub, KADHIM, Raheem G. and HASSAN, Aseel
(2018).
The effects of solvent treated PEDOT:PSS buffer layer in organic solar cells.
Journal of Materials Science: Materials in Electronics, 1-8.
[Article]
AL-HASHIMI, Mohammed K., KADEM, Burak Y. and HASSAN, Aseel K.
(2018).
Rutile TiO2 films as electron transport layer in inverted organic solar cell.
Journal of Materials Science: Materials in Electronics, 29 (9), 7152-7160.
[Article]
ALAM, A.E., CRANTON, Wayne and DHARMADASA, I.
(2019).
Electrodeposition of CdS thin-films from cadmium acetate and ammonium thiosulphate precursors.
Journal of Materials Science: Materials in Electronics.
[Article]
ATAPATTU, H. Y. R., DE SILVA, D. S. M., PATHIRATNE, K. A. S. and DHARMADASA, I
(2018).
An investigation into the effect of rate of stirring of bath electrolyte on the properties of electrodeposited CdTe thin film semiconductors.
Journal of Materials Science: Materials in Electronics, 29 (8), 6236-6244.
[Article]
BASOVA, Tamara V., KISELEV, Vitaly G., KLYAMER, Darya D. and HASSAN, Aseel
(2018).
Thin films of chlorosubstituted vanadyl phthalocyanine: charge transport properties and optical spectroscopy study of structure.
Journal of Materials Science: Materials in Electronics, 1-8.
[Article]
DHARMADASA, I, ECHENDU, O. K., FAUZI, F., ABDUL-MAFAF, N. A., OLUSOLA, O. I., SALIM, H.I., MADUGU, M.L and OJO, A.A.
(2016).
Improvement of composition of CdTe thin films during heat treatment in the presence of CdCl2.
Journal of Materials Science: Materials in Electronics, 28 (3), 2343-2352.
[Article]
DHARMADASA, I, ECHUNDU, O.K., FAUZI, F., ABDUL-MANAF, N.A., SALIM, H.I., DRUFFEL, T., DHARMADASA, R. and LAVEY, B.
(2015).
Effects of CdCl2 treatment on deep levels in CdTe and their implications on thin film solar cells;
A comprehensive photoluminescence study.
Journal of Materials Science: Materials in Electronics, 26 (7), 4571-4583.
[Article]
DHARMADASA, I and OJO, A. A.
(2017).
Unravelling complex nature of CdS/CdTe based thin film solar cells.
Journal of Materials Science: Materials in Electronics, 28 (22), 16598-16617.
[Article]
DHARMADASA, I., ALAM, A.E., OJO, A.A. and ECHENDU, O.K.
(2019).
Scientific complications and controversies noted in the field of CdS/CdTe thin film solar cells and the way forward for further development.
Journal of Materials Science: Materials in Electronics, 30 (23), 20330-20344.
[Article]
DISO, D. G., FAUZI, F., ECHENDU, O. K., OLUSOLA, O.I. and DHARMADASA, I
(2016).
Optimisation of CdTe electrodeposition voltage for development of CdS/CdTe solar cells.
Journal of Materials Science: Materials in Electronics, 27 (12), 12464-12472.
[Article]
ECHENDU, O.K., DEJENE, F.B. and DHARMADASA, I
(2018).
An investigation of the influence of different transparent conducting oxide substrates/front contacts on the performance of CdS/CdTe thin-film solar cells.
Journal of Materials Science: Materials in Electronics, 28 (24), 18865-18872.
[Article]
ECHENDU, O.K., WERTA, S.Z., DEJENE, F.B., OJO, A.A. and DHARMADASA, I.
(2019).
Ga doping of nanocrystalline CdS thin films by electrodeposition method for solar cell application: The influence of dopant precursor concentration.
Journal of Materials Science: Materials in Electronics, 30 (5), 4977-4989.
[Article]
ECHENDU, Obi Kingsley, DEJENE, Francis Birhanu and DHARMADASA, I
(2017).
Fluorine-induced improvement of structural and optical properties of CdTe thin films for solar cell efficiency enhancement.
Journal of Materials Science: Materials in Electronics, 28 (19), 14615-14630.
[Article]
OJO, A. A. and DHARMADASA, I
(2017).
Analysis of electrodeposited CdTe thin films grown using cadmium chloride precursor for applications in solar cells.
Journal of Materials Science: Materials in Electronics, 28 (19), 14110-14120.
[Article]
OJO, A. A. and DHARMADASA, I
(2017).
Optimisation of pH of cadmium chloride post-growth-treatment in processing CDS/CDTE based thin film solar cells.
Journal of Materials Science: Materials in Electronics, 28 (10), 7231-7242.
[Article]
OJO, A. A. and DHARMADASA, I
(2017).
Progress in development of graded bandgap thin film solar cells with electroplated materials.
Journal of Materials Science: Materials in Electronics, 28 (9), 6359-6365.
[Article]
OJO, A. A., SALIM, H.I., OLUSOLA, O.I., MADUGU, M.L. and DHARMADASA, I
(2016).
Effect of thickness: as case study of electrodeposited CdS in Cds/CdTe based photovoltaic devices.
Journal of Materials Science: Materials in Electronics, 28 (4), 3254-3263.
[Article]
OJO, A.A., SALIM, H.I. and DHARMADASA, I
(2018).
The influence of ZnS crystallinity on all-electroplated ZnS/CdS/CdTe graded bandgap device properties.
Journal of Materials Science: Materials in Electronics, 1-18.
[Article]
OLUSOLA, O. I., ECHENDU, O. K. and DHARMADASA, I
(2015).
Development of CdSe thin films for application in electronic devices.
Journal of Materials Science: Materials in Electronics, 26 (2), 1066-1076.
[Article]
OLUSOLA, O. I., MADUGU, M. L., OJO, A. A. and DHARMADASA, I.
(2020).
Development of CdMnTe thin films using electroplating technique for opto-electronic device applications.
Journal of Materials Science: Materials in Electronics.
[Article]
RAHAQ, Yaqub, MOUSSA, Magdi, WANG, Heming and HASSAN, Aseel
(2018).
Highly reproducible perovskite solar cells via controlling the morphologies of the perovskite thin films by the solution-processed two-step method.
Journal of Materials Science: Materials in Electronics, 1-11.
[Article]
SALIM, H.I., PATEL, V., ABBAS, A., WALLS, J. M. and DHARMADASA, I
(2015).
Electrodeposition of CdTe thin films using nitrate precursor for applications in solar cells.
Journal of Materials Science: Materials in Electronics, 26 (5), 3119-3128.
[Article]
None
ATAPATTU, H. Y. R., DE SILVA, D. S. M., PATHIRATNE, K. A. S. and DHARMADASA, I
(2016).
Effect of stirring rate of electrolyte on properties of electrodeposited CdS layers.
Journal of Materials Science: Materials in Electronics, 27 (5), 5415-5421.
[Article]
ATAPATTU, H. Y. R., DE SILVA, D. S. M., PATHIRATNE, K. A. S., OLUSOLA, O. I. and DHARMADASA, I
(2017).
Necessity and relevance of precipitate free clear electrolytes for electrodeposition of CdS semiconductor materials with enhanced photovoltaic properties.
Journal of Materials Science: Materials in Electronics, 28 (24), 18592-18602.
[Article]
BASOVA, T., KOL'TSOV, E., HASSAN, A. K., NABOK, A. V., RAY, A. K., GUREK, A. G. and AHSEN, V.
(2004).
Optical investigation of thin films of liquid-crystalline lutetium bisphthalocyanine.
Journal of Materials Science: Materials in Electronics, 15 (9), 623-628.
[Article]
DHARMADASA, I, SAMANTILLEKE, A. P., YOUNG, J., BOYLE, M. H., BACEWICZ, R. and WOLSKA, A.
(1999).
Electrodeposited p-type and n-type ZnSe layers for light emitting devices and multi-layer tandem solar cells.
Journal of Materials Science: Materials in Electronics, 10 (5-6), 441-445.
[Article]
ILEPERUMA, O. A., VITHANA, C., PREMARATNE, K., AKURANTHILAKA, S. N., MCGREGOR, S. M. and DHARMADASA, I
(1998).
Comparison of CdS thin films prepared by different techniques for applications in solar cells as window materials.
Journal of Materials Science: Materials in Electronics, 9 (5), 367-372.
[Article]
KADEM, Burak, HASSAN, Aseel and CRANTON, Wayne
(2016).
Efficient P3HT:PCBM bulk heterojunction organic solar cells; effect of post deposition thermal treatment.
Journal of Materials Science: Materials in Electronics, 27 (7), 7038-7048.
[Article]
KADEM, Burak Y., AL-HASHIMI, Mohammed, HASAN, Ali S., KADHIM, Raheem G., RAHAQ, Yaqub and HASSAN, Aseel
(2018).
The effects of the PEDOT:PSS acidity on the performance and stability of P3HT:PCBM-based OSCs.
Journal of Materials Science: Materials in Electronics, 29 (22), 19287-19295.
[Article]
KADEM, Burak Y., HASSAN, Aseel and CRANTON, Wayne
(2015).
Enhancement of power conversion efficiency of P3HT : PCBM solar cell using solution processed Alq3 film as electron transport layer.
Journal of Materials Science: Materials in Electronics, 26 (6), 3976-3983.
[Article]
MADUGU, M. L., BOWEN, L., ECHENDU, O. K. and DHARMADASA, I
(2014).
Preparation of indium selenide thin film by electrochemical technique.
Journal of Materials Science: Materials in Electronics, 25 (9), 3977-3983.
[Article]
SAMANTILLEKE, A. P., BOYLE, M. H., YOUNG, J. and DHARMADASA, I
(1998).
Electrodeposition of n-type and p-type ZnSe thin films for applications in large area optoelectronic devices.
Journal of Materials Science: Materials in Electronics, 9 (4), 289-290.
[Article]
SAMANTILLEKE, A. P., BOYLE, M. H., YOUNG, J. and DHARMADASA, I
(1998).
Growth of n-type and p-type ZnSe thin films using an electrochemical technique for applications in large area optoelectronic devices.
Journal of Materials Science: Materials in Electronics, 9 (3), 231-235.
[Article]
SAMANTILLEKE, A. P., DHARMADASA, I, PRIOR, K. A., CHOY, K. L., MEI, J., BACEWICZ, R. and WOLSKA, A.
(2001).
Development of opto-electronic devices using electrochemically grown thin ZnSe layers.
Journal of Materials Science: Materials in Electronics, 12 (11), 661-666.
[Article]