Formation and Transient Photovoltaic Properties of ZnO/Si …
323
32. Baraik K, Singh SD, Kumar Y, Ajimsha RS, Misra P, Jha SN, Ganguli T (2017) Epitaxial
growth and band alignment properties of NiO/GaN heterojunction for light emitting diode
applications. Appl Phys Lett 110:191603
33. Jumaand AO, Matibini A (2017) Synthesis and structural analysis of ZnO-NiO mixed oxide
nanocomposite prepared by homogeneous precipitation. Ceram Int 43:15424–15430
34. Majeed AMA, Nusseif AD, Hameed NS (2019) Investigations of ZnO-NiO/PSi heterojunction
for solar cell application. AIP Conf Proc 2144:030015
35. Li X, Shen R, Zhang B, Dong X, Chen B, Zhong H, Cheng L, Sun J, Du G (2011) Nitrogen
doped ZnO thin films prepared by photo-assisted metalorganic chemical vapor deposition. J
Nanosci Nanotechnol 11:9741–9744
36. Roshchina NM, Smertenko PS, Stepanov VG, Zavyalova LV, Lytvyn OS (2013) Some properties of thin film structures on the base of ZnO obtained by MOCVD method. Solid State
Phenom 256:228–236
37. Chatel G, Macfarlane DR (2014) Ionic liquids and ultrasound in combination: synergies and
challenges. Chem Soc Rev 43:8132–8149
38. Hosni M, Farhat S, Schoenstein F, Karmous F, Jouini N, Viana B, Mgaidi A (2014) Ultrasound
assisted synthesis of nanocrystalline zinc oxide: experiments and modeling. J Alloy Compd
615:S472–S475
39. Zakirov MI, Korotchenkov OA (2017) Carrier recombination in sonochemically synthesized
ZnO powders. Mater Sci Pol 35:211–216
40. Zakirov MI, Kuryliuk VV, Korotchenkov OA (2016) Optical properties of ZnO fabricated by
hydrothermal and sonochemical synthesis. J Phys Conf Ser 741:012028
41. Ji PF, Li Y, Zhou FQ, Song YL, Huang HC (2019) Fabrication and electroluminescence of sheetlike ZnO/Si light-emitting diodes by radio frequency magnetron sputtering method. Mater Lett.
http://www.doi.org/10.1016/j.matlet.2019.127028 (in Press)
42. Nagabharana RM, Kiran N, Guha P, Sundaravel B, Bhatta UM (2019) Structural characterization of magnetron sputtered ZnO thin films on Si(100) using RBS, scanning and high resolution
transmission electron microscopy methods. Surf Interfaces 15:239–243
43. Wang Y, Song J, Zhang J, Zheng G, Duan X, Xie X, Han B, Meng X, Yang F, Wang G, Zhao
Y, Li J (2019) Effect of substrate temperature on F and Al co-doped ZnO films deposited by
radio frequency magnetron sputtering. Sol Energy 194:471–477
44. Liu Y, Zhu S (2019) Preparation and characterization of Mg, Al and Ga co-doped ZnO
transparent conductive films deposited by magnetron sputtering. Results Phys 14:102514
45. Kim H-K, Chung K-B, Kal J (2019) Comparison of ZnO buffer layers prepared by spin coating
or RF magnetron sputtering for application in inverted organic solar cells. J Alloys Compd
778:487–495
46. Fareed S, Jamil A, Tiwari N, Rafiq MA (2019) Influence of Cr doping on Schottky barrier
height and visible light detection of ZnO thin films deposited by magnetron sputtering. Micro
Nano Eng 2:48–52
47. Ellmer K, Bikowski A (2016) Intrinsic and extrinsic doping of ZnO and ZnO alloys. J Phys D
Appl Phys 49:413002
48. Bikowski A, Rengachari M, Nie M, Wanderka N, Stender P, Schmitz G, Ellmer K (2015)
Research update: Inhomogeneous aluminium dopant distribution in magnetron sputtered ZnO:
Al thin films and its influence on their electrical properties. APL Mater 3:060701
49. Alcock CB, Itkin VP, Horrigan MK (1984) Vapour pressure equations for the metallic elements:
298–2500K. Can Metall Q 23:309–313
50. Sieber I, Wanderka N, Urban I, Dörfel I, Schierhorn E, Fenske F, Fuhs W (1998) Electron
microscopic characterization of reactively sputtered ZnO films with different Al-doping levels.
Thin Solid Films 330:108–113
51. Kinemuchi Y, Nakano H, Kaga H, Tanaka S, Uematsu K, Watari K (2011) Microstructural
evidence of Hall mobility anisotropy in c-axis textured Al-doped ZnO. J Am Ceram Soc
94:2339–2343
52. Kronik L, Shapira Y (1999) Surface photovoltage phenomena: theory, experiment, and
applications. Surf Sci Rep 37:1–206
Précédent

- 330/763

Suivant