References
- K. Vanheusden, W.L. Warren, J.A. Voigt, C.H. Seager,
D.R. Tallant, Impact of Pb doping on the optical and electronic
properties of ZnO powders, Appl. Phys. Lett., 67 (1995) 1280–1282.
- R. Wang, J.H. Xin, Y. Yang, H. Liu, L. Xu, J. Hu, The
characteristics and photocatalytic activities of silver doped ZnO
nanocrystallites, Appl. Surf. Sci., 227 (2004) 312–317.
- S. Sapra, D.D. Sarma, Evolution of the electronic structure with
size in II-VI semiconductor nanocrystals, Phys. Rev. B, 69 (2004)
125304.
- G. Pozina, L.-L. Yang, Q.X. Zhao, L. Hultman, P.G. Lagoudakis,
Size dependent carrier recombination in ZnO nanocrystals,
Appl. Phys. Lett., 97 (2010) 131909.
- B. Li, Y. Wang, Facile synthesis and enhanced photocatalytic
performance of flower-like ZnO hierarchical microstructures,
J. Phys. Chem. C, 114 (2009) 890–896.
- H. Kind, H. Yan, B. Messer, M. Law, P. Yang, Nanowire
ultraviolet photodetectors and optical switches, Adv. Mater.,
14 (2002) 158.
- D. Wu, Z. Gao, F. Xu, J. Chang, W. Tao, J. He, S. Gao, K. Jiang,
Hierarchical ZnO aggregates assembled by orderly aligned
nanorods for dye-sensitized solar cells, CrystEngComm, 15 (2013)
1210–1217.
- C. Zhang, J. Lin, Defect-related luminescent materials: synthesis,
emission properties and applications, Chem. Soc. Rev., 41 (2012)
7938–7961.
- M.R. Hoffmann, S.T. Martin, W. Choi, D.W. Bahnemann,
Environmental applications of semiconductor photocatalysis,
Chem. Rev., 95 (1995) 69–96.
- M. Cho, H. Chung, W. Choi, J. Yoon, Linear correlation
between inactivation of E. coli and OH radical concentration
in TiO2 photocatalytic disinfection, Water Res., 38 (2004)
1069–1077.
- A. Khayatian, M. Almasi Kashi, R. Azimirad, S. Safa,
S.F. Akhtarianfar Akhtarian, Effect of annealing process in
tuning of defects in ZnO nanorods and their application in UV
photodetectors,
Optik, 127 (2016) 4675–4681.
- X.C. Liu, E.-W. Shi, Z.-Z. Chen, H.-W. Zhang, L.-X. Song,
H. Wang, S.-D. Yao, Structural, optical and magnetic
properties of Co-doped ZnO films, J. Cryst. Growth, 296
(2006) 135–140.
- R. Ullah, J. Dutta, Photocatalytic degradation of organic dyes
with manganese-doped ZnO nanoparticles, J. Hazard. Mater.,
156 (2008) 194–200.
- E. Liu, P. Xiao, J.S. Chen, B.C. Lim, L. Li, Ni doped ZnO thin
films for diluted magnetic semiconductor materials, Curr. Appl.
Phys., 8 (2008) 408–411.
- H. Liu, J. Yang, Y. Zhang, L. Yang, M. Wei, X. Ding, Structure
and magnetic properties of Fe-doped ZnO prepared by the
sol–gel method, J. Phys.: Condens. Matter, 21 (2009) 145803.
- J.T. Luo, Y.C. Yang, X.Y. Zhu, G. Chen, F. Zeng, F. Pan,
Enhanced electromechanical response of Fe-doped ZnO films
by modulating the chemical state and ionic size of the Fe
dopant, Phys. Rev. B, 82 (2010) 014116.
- W. Huang, X. Tang, I. Felner, Y. Koltypin, A. Gedanken,
Preparation and characterization of FexOy–TiO2 via sonochemical
synthesis, Mater. Res. Bull., 37 (2002) 1721–1735.
- S. Xiao, L. Zhao, J. Lian, Enhanced photocatalytic performance
of supported Fe doped ZnO nanorod arrays prepared by wet
chemical method, Catal. Lett., 144 (2014) 347–354.
- M.M. Ba-Abbad, A.A.H. Kadhum, A.B. Mohamad, M.S. Takriff,
K. Sopian, Visible light photocatalytic activity of Fe3+-doped ZnO
nanoparticle prepared via sol–gel technique, Chemosphere, 91
(2013) 1604–1611.
- R. Azimirad, A. Khayatian, M. Almasi Kashi, S. Safa, Electrical
investigation and ultraviolet detection of ZnO nanorods
encapsulated with ZnO and Fe-doped ZnO layer, J. Sol-Gel Sci.
Technol., 71 (2014) 540–548.
- R. Azimirad, A. Khayatian, S. Safa, M. Almasi Kashi, Enhancing
photoresponsivity of ultra violet photodetectors based on Fe
doped ZnO/ZnO shell/core nanorods, J. Alloys Compd., 615
(2014) 227–233.
- Z.C. Chen, L.J. Zhuge, X.M. Wu, Y.D. Meng, Initial study on the
structure and optical properties of Zn1−xFexO films, Thin Solid
Films, 515 (2007) 5462–5465.
- A. Hui, J. Ma, J. Liu, Y. Bao, J. Zhang, Morphological evolution of
Fe doped sea urchin-shaped ZnO nanoparticles with enhanced
photocatalytic activity, J. Alloys Compd., 696 (2017) 639–647.
- A. Hassanpour, P. Guo, S. Shen, P. Bianucci, The effect of cation
doping on the morphology, optical and structural properties
of highly oriented wurtzite ZnO-nanorod arrays grown by a
hydrothermal method, Nanotechnology, 28 (2017) 435707.
- S. Safa, R. Azimirad, K. Mohammadi, R. Hejazi, A. Khayatian,
Investigation of ethanol vapor sensing properties of ZnO
flower-like nanostructures, Measurement, 73 (2015) 588–595.
- S. Safa, M. Khajeh, R. Azimirad, The effects of measuring
atmosphere on ultraviolet photodetection performance of ZnO
nanostructures, J. Alloys Compd., 735 (2018) 1406–1413.
- C.Y. Jiang, X.W. Sun, G.Q. Lo, D.L. Kwong, J.X. Wang, Improved
dye-sensitized solar cells with a ZnO-nanoflower photoanode,
Appl. Phys. Lett., 90 (2007) 263501.
- J.J. Kipling, R.B. Wilson, Adsorption of methylene blue in the
determination of surface areas, J. Chem. Technol. Biotechnol.,
10 (1960) 109–113.
- I. Soumahoro, R. Moubah, G. Schmerber, S. Colis, M. Ait Aouaj,
M. Abd-Lefdil, N. Hassanain, A. Berrada, A. Dinia, Structural,
optical, and magnetic properties of Fe-doped ZnO films
prepared by spray pyrolysis method, Thin Solid Films, 518
(2010) 4593–4596.
- Q. Zhu, J. Chen, Q. Zhu, Y. Cui, L. Liu, B. Li, X. Zhou,
Monodispersed hollow microsphere of ZnO mesoporous
nanopieces: preparation, growth mechanism and photocatalytic
performance, Mater. Res. Bull., 45 (2010) 2024–2030.
- L. Han, D. Wang, Y. Lu, T. Jiang, B. Liu, Y. Lin, Visible-lightassisted
HCHO gas sensing based on Fe-doped flowerlike ZnO
at room temperature, J. Phys. Chem. C, 115 (2011) 22939–22944.
- A. Yu, J. Qian, H. Pan, Y. Cui, M. Xu, L. Tu, Q. Chai, X. Zhou,
Micro-lotus constructed by Fe-doped ZnO hierarchically
porous nanosheets: preparation, characterization and gas
sensing property, Sens. Actuators, B, 158 (2011) 9–16.
- S. Kumar, S. Basu, B. Rana, A. Barman, S. Chatterjee, S.N. Jha,
D. Bhattacharyya, N.K. Sahoo, A.K. Ghosh, Structural, optical
and magnetic properties of sol–gel derived ZnO:Co diluted
magnetic semiconductor nanocrystals: an EXAFS study,
J. Mater. Chem. C, 2 (2014) 481–495.
- A. Ghosh, N.G. Deshpande, Y.G. Gudage, R.A. Joshi,
A.A. Sagade, D.M. Phase, R. Sharma, Effect of annealing
on structural and optical properties of zinc oxide thin film
deposited by successive ionic layer adsorption and reaction
technique, J. Alloys Compd., 469 (2009) 56–60.
- W. Shan, W. Walukiewicz, J.W. Ager, K.M. Yu, H. Yuan,
H.P. Xin, G. Cantwell, J.J. Song, Nature of room-temperature
photoluminescence in ZnO, Appl. Phys. Lett., 86 (2005)
191911–191913.
- J. Zhang, L.D. Sun, C.S. Liao, C.H. Yan, A simple route towards
tubular ZnO, Chem. Commun., 3 (2002) 262–263.
- C.-L. Hsu, Y.D. Gao, Y.-S. Chen, T.J. Hsueh, Vertical p-type
Cu-doped ZnO/n-type ZnO homojunction nanowire-based
ultraviolet photodetector by the furnace system with hotwire
assistance, ACS Appl. Mater. Interfaces, 6 (2014) 4277–4285.
- S.K. Panda, C. Jacob, Preparation of transparent ZnO thin
films and their application in UV sensor devices, Solid-State
Electron., 73 (2012) 44–50.