Enhanced magnetoresistance properties of K-site deficient La0.85K0.1□0.05MnO3 manganites synthesized via sol–gel, wet-mixing, and solid-state reaction methods

The effect of synthesis methods on the structural, magnetic, electrical transport, and magnetoresistance (MR) properties of K-deficient La0.85K0.1□0.05MnO3 (LKdMO) materials has been investigated. The compounds were synthesized via sol–gel (SG), wet-mixing (WM), and solid-state (SS) reaction. The re...

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Veröffentlicht in:RSC advances 2024-12, Vol.14 (52), p.38615-38633
Hauptverfasser: Vitayaya, Okvarahireka, Kurniawan, Budhy, Phahul Zhemas Zul Nehan, Munazat, Dicky Rezky, Toto Sudiro, Imaduddin, Agung, Heri Nugraha, Sigit Dwi Yudanto, Maykel T E Manawan
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Sprache:eng
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Zusammenfassung:The effect of synthesis methods on the structural, magnetic, electrical transport, and magnetoresistance (MR) properties of K-deficient La0.85K0.1□0.05MnO3 (LKdMO) materials has been investigated. The compounds were synthesized via sol–gel (SG), wet-mixing (WM), and solid-state (SS) reaction. The resulting ceramics were characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), X-ray photoelectron spectroscopy (XPS), and four point probe (FPP) techniques to evaluate their crystal structure, morphologies, elemental composition, electrical transport properties, and magnetoresistance (MR) behavior. This study reveals that the electrical- and magneto-transport properties of LKdMO ceramics are strongly influenced by their synthesis method. Among the samples, the WM method yielded ceramics with smaller grain sizes and more dispersed grain boundaries, leading to reduced resistivity. The MR values for LKdMO ceramics synthesized through SG, WM, and SS reached 17.05% at 287.74 K, 54.68% at 271.50 K, and 47.09% at 270.25 K, respectively. The WM-synthesized sample exhibited superior crystal quality and enhanced magnetic and electrical properties. These results indicate that LKdMO ceramics are promising candidates for application in magnetic sensors.
ISSN:2046-2069
2046-2069
DOI:10.1039/d4ra07105k