Problem statement: Microstructure of the grain will influence the properties of a polycrystalline manganites when different dopant is introduced. In this work, an effort had been made to investigate the influence of Ca, Ba and Sr substitution in La site. Approach: Polycrystalline manganites compound of La0.67A0.33MnO3 where A = Ba, Sr and Ca had been prepared via conventional solid-state reaction method. The structure, microstructure, magnetic and electrical properties had been investigated using XRD, SEM, VSM and four-point probe techniques. Results: XRD spectrums showed that LBMO and LCMO were in single-phase orthorhombic structure whereas LSMO was rhombohedral structure. Scanning electron micrographs showed that LSMO had smaller average ...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
The effect of yttrium (Y) substitution at La-site on structural, microstructural and electrical tran...
Polycrystalline manganites compound of La0.67A0.33MnO3 (A= Sr, Ca) has prepared by conventional soli...
With a view to understand the influence of cation mismatch on magnetic as well as electrical behavio...
With a view to understand the influence of cation mismatch on magnetic as well as electrical behavio...
A systematic investigation of lanthanum-based manganite, $La_{0.67}Sr_{0.33}MnO_3$, has been underta...
International audienceA systematic investigation of the La0,67Ba0,33Mn0,9Cr0,1O3 perovskite has been...
La0.67(Ba,Sr)0.33MnO3 were prepared via solid‐state reaction method. Rietveld refinement showed that...
A systematic investigation of lanthanum-based manganite, $La_{0.67}Sr_{0.33}MnO_3$, has been underta...
We synthesized the polycrystalline manganite of La5/8Ca3/8MnO3 with three different manganese rout...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
In this paper we report the investigation of transition metal oxide compound, La<sub>0·67</sub>Ca<su...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
Properties of substituted La-manganites are known to be very sensitive to La site substitution, The ...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
The effect of yttrium (Y) substitution at La-site on structural, microstructural and electrical tran...
Polycrystalline manganites compound of La0.67A0.33MnO3 (A= Sr, Ca) has prepared by conventional soli...
With a view to understand the influence of cation mismatch on magnetic as well as electrical behavio...
With a view to understand the influence of cation mismatch on magnetic as well as electrical behavio...
A systematic investigation of lanthanum-based manganite, $La_{0.67}Sr_{0.33}MnO_3$, has been underta...
International audienceA systematic investigation of the La0,67Ba0,33Mn0,9Cr0,1O3 perovskite has been...
La0.67(Ba,Sr)0.33MnO3 were prepared via solid‐state reaction method. Rietveld refinement showed that...
A systematic investigation of lanthanum-based manganite, $La_{0.67}Sr_{0.33}MnO_3$, has been underta...
We synthesized the polycrystalline manganite of La5/8Ca3/8MnO3 with three different manganese rout...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
In this paper we report the investigation of transition metal oxide compound, La<sub>0·67</sub>Ca<su...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
Properties of substituted La-manganites are known to be very sensitive to La site substitution, The ...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
We have prepared perovskite structured La0.67A0.33MnO3 manganite (A = Ba, Ca and Sr) using co-precip...
The effect of yttrium (Y) substitution at La-site on structural, microstructural and electrical tran...