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Journals >
Acta Optica Sinica >
Volume 40 >
Issue 16 >
Page 1616001 > Article
Acta Optica Sinica
Vol. 40, Issue 16, 1616001 (2020)
Fast Electrochemical Deposition and Non-Radiative Recombination of ZnO Nanorods
Yang Tang
1、2、*
Author Affiliations
1
Center for Green Energy and Architecture, China Energy, Beijing 102211, China
2
National Institute of Clean-and-Low-Carbon Energy, Beijing 102211, China
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DOI:
10.3788/AOS202040.1616001
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Yang Tang. Fast Electrochemical Deposition and Non-Radiative Recombination of ZnO Nanorods[J]. Acta Optica Sinica, 2020, 40(16): 1616001
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Fig. 1.
SEM images of samples 1--5. (a)(c)(e)(g)(i) Front; (b)(d)(f)(h)(j) cross section
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Fig. 2.
Transmissivity and reflectivity spectra of samples 1--5. (a) Sample 1; (b) sample 2; (c) sample 3; (d) sample 4; (e) sample 5
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Fig. 3.
Fitting plots of optical bandgap for samples 1--5. (a) Sample 1; (b) sample 2; (c) sample 3; (d) sample 4; (e) sample 5
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Fig. 4.
Room temperature photoluminescence spectra of samples 1--5. (a) Sample 1; (b) sample 2; (c) sample 3; (d) sample 4; (e) sample 5
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Fig. 5.
Gaussian fitting results of room temperature photoluminescence spectra of samples 1--5. (a) Sample 1; (b) sample 2; (c) sample 3; (d) sample 4; (e) sample 5
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Sample
No.
Diameter /
nm
Density /
(10
9
cm
-2
)
Distance /
nm
Height /
nm
1
83±34
10.0
-
82±16
2
71±24
8.0
41
294±31
3
61±21
7.9
52
374±31
4
61±20
7.9
52
369±32
5
55±24
7.9
58
356±25
Table 1.
Parameters of ZnO nanorods
Sample
No.
Energy of
NBE 1 /eV
Energy of
NBE 2 /eV
Energy of
NBE 3 /eV
Stokes
shift /eV
1
3.288
-
3.064
0.232
2
3.318
3.187
-
0.082
3
3.313
3.176
-
0.097
4
3.307
3.174
-
0.083
5
3.315
3.175
-
0.085
Table 2.
Near band edge emission and Stokes shift of ZnO nanorods in samples 1--5
Abstract
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Yang Tang. Fast Electrochemical Deposition and Non-Radiative Recombination of ZnO Nanorods[J]. Acta Optica Sinica, 2020, 40(16): 1616001
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Paper Information
Category: Materials
Received: Mar. 9, 2020
Accepted: May. 15, 2020
Published Online: Aug. 6, 2020
The Author Email: Tang Yang (yang.tang.a@chnenergy.com.cn)
DOI:
10.3788/AOS202040.1616001
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