Accesso libero

Characterisation and Optical Studies of Copper Oxide Nanostructures Doped with Lanthanum Ions

INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Yan L.,Zheng Y.B, Zhao F. Li S., Gao X., Xu B. Weiss P.S, Zhao Y, in: Chemistry and Physics of a single atomic layer in Strategies and challenges for functionalization of graphene and graphene-based materials, Chem.Soc.Rev. 41 (2012), 97-114.10.1039/C1CS15193BSearch in Google Scholar

2. Amelia, M.,Lincheneau C.,Silvi S., Credi., in: A. Electrochemical Properties of CdSe and CdTe quantum dots. Chem.Soc. Rev. 41 (2012), 5728-5743.Search in Google Scholar

3. Zheng X.G., Xu C.N., Tomokiyo Y., Tanaka E., Yamada H. and Soejima Y., in: Observation of Charge Stripes in Cupric Oxide, Phys. Rev. Lett. 85 (2000), 5170.10.1103/PhysRevLett.85.5170Search in Google Scholar

4. Chang M.H., Liu H.-S.,Tai C.Y., in: Preparation of Copper Oxide nanoparticles and its application in nanofluid, Powder P.V.D.S. Technol. 207 (2011), 378.10.1016/j.powtec.2010.11.022Search in Google Scholar

5. Udani P.P.C., Gunawardana Lee H.C., Kim D.H, in: Steam reforming and oxidative steam reforming of methanol over CuO-CeO2 catalysts, Int. J. Hydrogen Energy 34(2009), 7648.10.1016/j.ijhydene.2009.07.035Search in Google Scholar

6. Cao J.L., Shao G.S., Wang Y., Liu Y., Yuan Z.Y.,in: CuO catalysts supported on attapulgite clay for low-temperature CO oxidation, Catal. Commun. 9 (2008), 2555.10.1016/j.catcom.2008.07.016Search in Google Scholar

7. Chiang C.Y., Aroh K., Franson N., Satsangi V.R., Dass S., Ehrman S.,in: Copper oxide nanoparticle made by flame spray pyrolysis for photo electrochemical water splitting -Part II. Photo electrochemical study, Int. J. Hydrogen Energy 36 (2011), 15519.10.1016/j.ijhydene.2011.09.041Search in Google Scholar

8. [8] Langford J.I. Louer D., High-resolution powder diffraction studies of copper (II) oxide,J. Appl. Crystallogr. 24(1991)149.10.1107/S0021889890012092Search in Google Scholar

9. Abaker M., Umar, A. Baskoutas S., Kim S.H., Hwang S.W., in: Structural and optical properties of CuO layered hexagonal discs synthesized by a low-temperature hydro-thermal process, J. Phys. D: Appl. Phys. 44 (2011), 15510.1088/0022-3727/44/15/155405Search in Google Scholar

10. Williamson G.K., Hall W.H, in: X-ray line broadening from filed Aluminum and wolfram, Acta Metall. 1 (1953), 22.10.1016/0001-6160(53)90006-6Search in Google Scholar

11. Moss M.A. Burrell T.S, Ellis G.J., in: Semiconductor Opto-Electronics, Butterworth & Co. Ltd, 1973.10.1016/B978-0-408-70326-0.50010-7Search in Google Scholar

12. Honsi H.M., Fayek S.A., El-Sayed S.M., Roushdy M., in: Optical properties and DC electrical conductivity of Ge28−xSe72Sbx thin films, Vacuum 81 (2006), 54.10.1016/j.vacuum.2006.02.014Search in Google Scholar

13. Sawaby A., Selim M.S., Marzouk S.Y., Mostafa M.A. Hosny A, in: Structure, optical and electrochromic properties of NiO thin films”, Physica B 405 3412 (2010).Search in Google Scholar

14. Ken Ohwade and Ginji Pujiswas in: Optical vibration of doped Lanthanum Copper Oxide compound, Applied Spectroscopy, 47, 3(1993), 296-99.10.1366/0003702934066631Search in Google Scholar

15. Golosovsky I.V ,Gukasov A.G,Polyakov V.A, in : nonlinear anti- ferromagnetic structure with the propagation vector and the transition temperature of 130K was found in monoclinic compound La2Cu2O5 by single crystal neutron diffraction, J Phys-Condensed Matter,11,36(1999)6959-67Search in Google Scholar

16. Neeleshwar S, Chen C.L, Tsai C.B., Chen Y.Y., Chen C.C., Shyu S.G., Seehra M.S., in: dependent properties of CdSe quantum dots, Phys. Rev. B 71 (2005) 201,307Search in Google Scholar

17. Nanda K K., Kruis F E., Hassan H., Phys.Rev.Lett. 89 (2002) 256103.10.1103/PhysRevLett.89.25610312484904Search in Google Scholar

18. Gizhevskii B.A., Sukhorukov Y.P., Moskvin. A.S.,Loshkareva N.N., Mostovshchikova E.V., Ermakov A.E., Kozlov E.A., Uimin M.A., Gaviko V.S in : Anomalies in the Optical properties of Nanocrystalline Copper Oxides CuO and Cu2O near the fundamental absorption edge, JETP 102 (2006) 297.Search in Google Scholar

19. Sukhorukov Y.P., Gizhevskii B.A., Mostovshchikova E.V., Yermakov A.Y., Tugushev S.N., Kozlov E.A., in: Nano-crystalline Copper Oxide for selective solar energy absorbers, Tech. Phys.Lett. 32 (2006) 132.Search in Google Scholar

20. Ovchinnikov S.G., Gizhevskii B.A, Sukhorukov Y.P., Ermakov A.E., Uimin M.A., Kozlov E.A., Kotov Y., Bagazeev A.A.V, in: Specific features of the electronic structure and optical spectra of nanoparticles with strong electron correlations, Phys. Solid State 49 (2007), 111610.1134/S1063783407060169Search in Google Scholar

21. Rehman S., Mumtaz A Hasanain S.K., in: Size effects on the Magnetic and Optical properties of CuO nanoparticles”, J. Nanopart. Res. 13 (2011), 2497.10.1007/s11051-010-0143-8Search in Google Scholar

22. Koffyberg F.P., Benko F.A., in: A Photoelectrochemical determination of the position of the conduction and valence band edges of p‐type CuO , J. Appl. Phys. 53 (1982), 1173.10.1063/1.330567Search in Google Scholar

23. Neeleshwar S., C. Chen., Tsai L. C.B., Y. Chen., C.Y. Chen., C. Shyu S.G., Seehra M.S., in: Size-dependent properties of CdSe quantum dots, Phys. Rev. B 71 (2005), 201307.10.1103/PhysRevB.71.201307Search in Google Scholar

24. Sukhorukov Y.P., Gizhevskii B.A., Mostovshchikova E.V., Yermakov A.Y., Tugushev S.N., Kozlov E.A.,in: Nano-crystalline Copper Oxide for selective solar energy absorbers, Tech. Phys.Lett. 32 (2006), 132.10.1134/S1063785006020131Search in Google Scholar

25. Ovchinnikov S.G., Gizhevskii B.A., Sukhorukov Y.P., Ermakov A.E., Uimin A., Kozlov E.A., Kotov Y.,Bagazeev A.A.V.,in: Specific features of the Electronic structure and Optical spectra of nanoparticles with strong electron correlations, Phys. Solid State 49 (2007) 1116.Search in Google Scholar

26. Koffyberg F.P., Benko F.A.,in: A photoelectrochemical determination of the position of the conduction and valence band edges of p‐type CuO , J. Appl. Phys. 53 (1982), 1173.10.1063/1.330567Search in Google Scholar

27. Mushtaq A.D,Sang H, in: Synthesis character and Electrochemical properties of CuO nanostructure,J.Solid state Electrochemical 14(2010), 1719-26.10.1007/s10008-010-1022-zSearch in Google Scholar

28. Kannaki k,Remesh PS, Hydrothermal synthesisi of CuO Nanostructure and their charactgerisation, In.J. of Scientific & Engg.Res. 3,9 (2012), 1-4 Search in Google Scholar

eISSN:
2083-4799
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Materials Sciences, Functional and Smart Materials