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Electrochemical growth and physical properties of Mg-Doped ZnO nanorods: An experimental and theoretical study

delete2026-08-03
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PRE
AI
A
A. Ait hssi *
C
C. Driouech
A
A. Soussi
O
O. Haddad
N
N. Labchir
I
I. Ait Brahim
M
M. Idiri
A
A. Elfanaoui
K
K. Bouabid
DOI:10.1016/j.materresbull.2026.114369delete
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Abstract

Abstract

En 中文
• Mg-doped transparent conductive oxides ZnO nanorods were synthesized via two-step electrochemical deposition on ITO. • Mg incorporation induces lattice contraction, microstrain, and reduced crystallinity. • Nanorod diameter decreases systematically with Mg content due to modified growth kinetics. • Enhanced optical transparency and an increased band gap from 3.30 to 3.39 eV achieved through magnesium doping. • PL analysis reveals enhanced defect-related emission associated with strain and disorder. • DFT (TB-mBJ) calculations confirm bandgap widening and improved visible transmittance.
Keywords:
Electrodeposition
Mg doped ZnO
Transmittance
Gap energy
DFT calculation

Journal

Materials Research Bulletin cover
Materials Research Bulletin
IF:
5.7
Papers:
1.3W
Citations:
2.9W

Organization

M
mohammed v university
Scholars:
283
Papers: 115
Citations: 0
I
ibn zohr university
Scholars:
235
Papers: 98
Citations: 2
M
mohammed vi polytechnic university
Scholars:
3.3K
Papers: 2.3K
Citations: 48
H
Hassan II University of Casablanca
Scholars:
5.0K
Papers: 3.3K
Citations: 3
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