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Figure/Table detail
Optical gap energy of eletrodeposited ZnO nanorods and its non-radiative recombination
Yang TANG
Journal of Materials Engineering
, 2022, 50(
3
): 90-97. DOI:
10.11868/j.issn.1001-4381.2020.000215
Sample
Diameter/
nm
Height/
nm
Density/
10
9
cm
-2
Distance/
nm
1
70±24
89±25
12.0
—
2
39±13
95±27
16.0
40
3
66±17
102±30
8.6
42
4
73±17
178±32
6.3
53
5
22±9
156±34
5.9
108
Table 1
Morphological data of ZnO nanorods
Other figure/table from this article
Fig.1
Scanning electron microscopy images of ZnO nanorod samples
(a)sample 1;(b)sample 2;(c)sample 3;(d)sample 4;(e)sample 5;(1)top view; (2)side view
Fig.2
XRD spectra of AZO thin film and the sample 1-5
Fig.3
Transmission spectra of the sample 1-5 and the fitting plots of optical band gap energy
Fig.4
Reflection spectra of sample 1-5
Fig.5
Room temperature photoluminescence spectra of ZnO nanorods samples
Fig.6
Gauss fitting results of room temperature photoluminescence spectra of ZnO nanorods samples (300-470 nm)
(a)sample 1;(b)sample 2;(c)sample 3;(d)sample 4;(e)sample 5
Table 2
Near band edge emission (NBE) and Stokes shift of ZnO nanorods