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Synthesis of nickel nanowires (Ni-NWs) as high ferromagnetic material by electrodeposition technique

Aamir ShahzadDepartment of Physics, Government College University Faisalabad (GCUF), Allama Iqbal Road, Faisalabad 38040, PakistanIjaz Ahmad KhanDepartment of Physics, Government College University Faisalabad (GCUF), Allama Iqbal Road, Faisalabad 38040, PakistanAlina ManzoorDepartment of Physics, Government College University Faisalabad (GCUF), Allama Iqbal Road, Faisalabad 38040, PakistanMuhammad KashifDepartment of Physics, Government College University Faisalabad (GCUF), Allama Iqbal Road, Faisalabad 38040, PakistanMuhammad AhsanDepartment of Physics, Government College University Faisalabad (GCUF), Allama Iqbal Road, Faisalabad 38040, PakistanMaogang HeKey Laboratory of Thermo-Fluid Science and Engineering, Ministry of Education (MOE), Xi'an Jiaotong University, Xi'an 710049, P. R. ChinaJamoliddin RazzokovInstitute of Fundamental and Applied Research, National Research University TIIAME, Kori Niyoziy 39, 100000 Tashkent, Uzbekistan
Heliyonjournal2022en
ABI

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Metallic nanowires (NWs) and their different compounds display incredible prospects for their use in various applications including media storage, sensor and solar cell devices along with the biological drug delivery systems. In this research work, the metallic NWs like nickel nanowires (Ni-NWs) are synthesized successfully by employing electrodeposition process. Anodic aluminum oxide (AAO) templates are employed as a platform with copper metal coating which acts as an active cathode. The synthesized Ni-NWs are examined through various characterization techniques including X-ray diffraction (XRD), scanning electron microscope (SEM) and vibrating sample magnetometer (VSM) to study the crystal structure, surface morphology and magnetic properties, respectively. The XRD analysis shows the development of various diffraction planes like Ni (111), Ni (200), Ni (220) which confirms the formation of polycrystalline nickel NWs. The SEM analysis reveals that the range of diameter and length of nickel NWs are found to be ∼160 to 200 and ∼4 to 11 micron respectively showing high aspect ratio (ranged from ∼200 to 300). The ferromagnetic behavior of Ni-NWs is confirmed by the hysteresis loop carried out for parallel and perpendicular configurations having Hc = 100 and 206 Oe, respectively. The obtained results suggest that the synthesized Ni- NWs may be used for high-density media storage devices.

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