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Wybrane pełne teksty z tego czasopisma
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Języki publikacji
Abstrakty
Optical properties of the zinc-cobalt oxide (ZnCoO) layers manufactured at different process conditions have been investigated. ZnCoO layers were grown on sapphire and glass substrates by pulsed laser deposition (PLD) technique. The influence of growth conditions as well as post-growth annealing on the films transmission and gap energy was analyzed.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
878--884
Opis fizyczny
Bibliogr. 41 poz., rys., tab.
Twórcy
autor
- Faculty of Mathematics and Natural Sciences University of Rzeszow, Rzeszow, Poland
autor
- Drogobych State Pedagogical University, Drogobych, Ukraine
- Faculty of Mathematics and Natural Sciences University of Rzeszow, Rzeszow, Poland
autor
- Faculty of Mathematics and Natural Sciences University of Rzeszow, Rzeszow, Poland
autor
- Faculty of Mathematics and Natural Sciences University of Rzeszow, Rzeszow, Poland
Bibliografia
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- [2] KHRANOVSKYY V., ERIKSSON J., LLOYDSPETZNITA A., YAKIMOVA R., HULTMAN L., Thin Solid Films 517, (2009) 2073.
- [3] LORITE I., RUBIO-MARCOS F., ROMERO J.J., FERNÁNDEZ J.F., Mater. Lett., 63, (2009) 212.
- [4] PHAN T.L., SUN Y.K., VINCENT R., CHERNS D., NGHIA N.X., YU S.C., J. Korean. Phys. Soc., 52, (2008) 1633.
- [5] RYU Y.R., LEE T.S., LUBGUBAN J.A., WHITE H.W., PARK Y.S., YOUN C.J., Appl. Phys. Lett., 87, (2005) 153504.
- [6] NGAN P.H., TIEN N.Q., DAT D.T., NHO P.V., NGHIA N.X., YU S.C., J. Korean. Phys. Soc., 52, 1594 (2008).
- [7] GIRIJA K.G., SOMASUNDARAM K., TOPKAR A., VATSA R.K., J. Alloy Comp., 684(5) (2016), 15.
- [8] YA K.X., YIN H., DE T.M., JING T.M., Mater Res Bull, 33, (1998) 1703.
- [9] LEE J.H., KO K.H., PARK B.O., J. Cryst. Growth, 247(1 - 2), (2003)119.
- [10] KONENKAMP R., BOEDECKER K., LUX-STEINER M., POSCHENRIEDER C. M., ZENIA F., LEVYCLEMENT C., WAGNER S., Appl. Phys. Lett., 77(16), (2000) 2575.
- [11] VIRT I.S., HADZAMAN I.V., BILYK I.S., RUDYI I.O., KURILO I.V., FRUGYNSKYI M.S., POTERA P., Acta Phys. Pol. A, 117(1), (2010) 34.
- [12] WISZ G., VIRT I., SAGAN P., POTERA P., YAVORSKYI R., Nanoscale Res. Lett., 12, (2017) 253.
- [13] SINGH S., KAUR H., PATHAK D., BEDI R.K., J. Nanomater. Bios., 6(2), (2011), 689.
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- [15] TAN S.T., CHEN B.J., SUN X.W., FAN W.J., KWOK H.S., ZHANG X.H., CHUA S.J., J. Appl. Phys., 98, (2005) 013505.
- [16] CHO S., Trans. Electr. Electron. Mat. 10(6), (2009) 185.
- [17] SRINIVASAN G., GOPALAKRISHNAN N., YU Y.S., KESAVAMOORTHY R., KUMAR J., Superlattice Microst., 43(2), (2008) 112.
- [18] KAYANI Z.N., QBAL M., RIAZ S., ZIA R., NASEEM S., Mat. Sci.-Poland, 33(3), (2015), 515.
- [19] DALCHIELE E. A., GIORGI P., MAROTTI R. MARTIŃE F., AYOUCI R., LEINEN D., Solar Energ. Mat. Sol. C., 70(3), (2001) 245.
- [20] NADARAJAH K., CHEE C.Y., TAN C.Y., J. Nanomater., (2013), 1 (Article ID 146382).
- [21] DIETL T., OHNO H., MATSUKURA F., Phys. Rev. B 63, (2001) 195205.
- [22] BENRAMACHE S., BENHAOUA B., CHABANE F., J. Semicond. 33, (2012) 093001-1
- [23] YAMADA T., NEBIKI T., KISHIMOTO S., MAKINO H., AWAI K., NARUSAWA T., YAMAMOTO T., Superlattice. Microst., 42, (2007) 68.
- [24] DUCLÈRE, J.R., NOVOTNY M., MEANEY A., O’HAIRE R., MCGLYNN E., HENRY M.O., MOSNIER P.J., Superlattice. Microst., 38 (2005), 397.
- [25] ABED S., AIDA M.S., BOUCHOUIT K., ARBAOUI, A., ILIOPOULOS K., SAHRAOUI B., Opt. Mater., 33, (2011) 968.
- [26] BENRAMACHE S., BENHAOUA B., Superlattice. Microst., 52, (2012) 807.
- [27] BENRAMACHE S., BENHAOUA B., BENTRAH H., J. Nanostr. Chem., 3 (2013) 54.
- [28] RIVERA M.J., RAMÍREZ E.B., JUÁREZ B., GONZÁLEZ J., GARCÍA-LEÓN J.M., ESCOBARALARCÓN L., ALONSO J.C., Thin Solid Films, 605, (2016), 108.
- [29] SUZUKI T., CHIBA H., KAWASHIMA T., WASHIO K., Thin Solid Films, 605, (2016), 53.
- [30] HORNG R.H., OU S.L., HUANG C.Y., RAVADGAR P., WU C.I., Thin Solid Films 605, (2016), 30.
- [31] TYPEK J., GUSKOS N., ZOLNIERKIEWICZ G., SIBERA D. NARKIEWICZ U., Rev. Adv. Mater. Sci., 50 (2017) 76.
- [32] KAYANIA Z. N., AFZALA A., KHANA E. S., NAZIRA F., SALEEMIA F., RIAZB S., NASEEMB S., Materials Today: Proceedings, 2 (2015) 5473.
- [33] SU Y.L., ZHANG Q.Y., ZHOU N., MA C.Y., LIU X.Z., ZHAO J.J., Solid State Commun., 250, (2017), 123.
- [34] ZENG Y., GAUQUEL N, LI D., RUAN S, HE H., EGOAVIL R., YE Z., VERBEECK Y., HADERMANN J., BAEL M.J., HAESENDONCK CH, ACS Appl. Mater. Inter., 40 (2015), 22166.
- [35] WOLSKA E., ŁUKASIEWICZ M., FIDELUS J.D, ŁOJKOWSKI W., GUZIEWICZ, GODLEWSKI M., Acta Phys. Pol., 116(5), (2009) 918.
- [36] CAO P., BAI Y., Advanced Materials Research, 781-784 (2013), 323.
- [37] TORTOSA M., MOLLAR M., MARÍ B., LLORET F., J. Appl. Phys., 104 (2008), 033901.
- [38] LI C., GAO G., CHEN X., MATEC Web of Conferences, 67, (2016) 02004
- [39] VUICHYK M.V., TSYBRII Z.F., LAVORYK S.R., SVEZHENTSOVA K.V., VIRT I.S., CHIZHOV A., Semicond. Phys., Quant. El. Optoelectron., 17 (2014), 80.
- [40] IVILL M., PEARTON S.J., RAWAL S., LEU L., SADIK P., DAS R., HEBARD A.F., CHISHOLM M., BUDAI J.D., NORTON D.P., New J. Phys., 10 (2008) 065002.
- [41] VIEZBICKE B.D., PATEL S., DAVIS B.E., BIRNIE D.P., Phys. Status Solidi B, 252(8) (2015), 1700.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1f203b12-0b49-4064-9a7f-29b02faf90ea