Pakistan Journal of Chemistry

Research Article| Open Access
Volume 16 | Issue 03 | Page 74-83| https://doi.org/10.15228/2026.v16.i3.p08

Mg-Induced Structural Transitions and Blue-Shift in the Optical Properties of ZnO

Ramsha Saleem
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Humera Shaikh
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Muhammad Saajan Bharhaam2
Mehran University Institute of Science & Technology Development, Jamshoro, Pakistan

Abdul Majid Soomro
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Nek Muhammad Shaikh
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Waseem Ahmed Bhutto
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Irfan Ali Sanjrani
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Zahid Hussain Arain
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Muhammad Waseem Mirbhar
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Tarique Ali Siyal
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Naveed Abbas Nangraj
Institute of Physics, University of Sindh, Jamshoro, Pakistan

Received
16 Mar, 2026
Accepted
22 Apr, 2026
Published
22 Apr, 2026

ABSTRACT:
Mg-ZnO NPs with varying concentrations (4, 8, and 12) % were synthesized via a low-cost co-precipitation method. Morphological transition revealed by SEM: a significant change was observed in morphology due to the high temperature; NPs changed from irregular-shaped granules to spherical clusters for undoped ZnO to higher Mg concentrations. Single-phase hexagonal wurtzite structure confirmed by XRD in all samples, with peak shifts indicating the successful substitution of Zn²⁺ by Mg²⁺. The Debye-Scherrer formula was used to find the average crystallite size; the particle size increased from 27.24nm to 31.19nm in the undoped ZnO and 12% Mg-doped samples, respectively, reflecting improved crystallinity. PL analysis demonstrated a significant blue shift in the Near Band Edge (NBE) emission, with the optical band-gap (calculated from the emission peak) increasing from 3.35 eV to 3.48 eV. EDX results validated the elemental purity of the Zn, O, and Mg constituents. The 8% Mg-ZnO sample showed the lowest PL intensity, indicating suppressed electron-hole recombination. These structural and optical modifications, particularly the formation of spherical clusters and the tuning of band gaps, make these Mg-ZnO NPs highly efficient candidates for the photocatalytic degradation of organic dyes in wastewater treatment.
Keywords: ZnO NPs, Mg doping, Co-precipitation, Blue shift.

How to Cite this paper?

APA- Style
R. Saleem, H. Shaikh, M. S. Bharhaam, A. M. Soomro, N. M. Shaikh, W. A. Bhutto, I. A. Sanjrani, Z. H. Arain, M. W. Mirbhar, T. A. Siyal, N. A. Nangraj(2026). Mg-Induced Structural Transitions and Blue-Shift in the Optical Properties of ZnO, (2026) Pakistan Journal of Chemistry, 16(3), 74-83. https://doi.org/10.15228/2026.v16.i3.p.74-83.

ACS Style
Saleem R., Shaikh H., Bharhaam M. S., Soomro A. M., Shaikh N. M., Bhutto W. A., Sanjrani I. A., Arain Z. H., Mirbhar M. W., Siyal T. A., Nangraj N. A., Mg-Induced Structural Transitions and Blue-Shift in the Optical Properties of ZnO, Pakistan Journal of Chemistry, 16(3), 74-83. https://doi.org/10.15228/2026.v16.i3.p.74-83.

AMA Style

Saleem R; Shaikh H; Bharhaam M. S; Soomro A. M; Shaikh N. M; Bhutto W. A; Sanjrani I. A; Arain Z. H; Mirbhar M. W; Siyal T. A; Nangraj N. A; Mg-Induced Structural Transitions and Blue-Shift in the Optical Properties of ZnO, Pakistan Journal of Chemistry, 16(3), 74-83. https://doi.org/10.15228/2026.v16.i3.p.74-83.

Chicago/Turabian Style
Saleem R, Shaikh H, Bharhaam MS, Soomro AM, Shaikh NM, Bhutto WA, Sanjrani IA, Arain ZH, Mirbhar MW, Siyal TA, Nangraj NA, Mg-Induced Structural Transitions and Blue-Shift in the Optical Properties of ZnO, (2026) Pakistan Journal of Chemistry, 16(3), 74-83. https://doi.org/10.15228/2026.v16.i3.p.74-83.

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