In this paper we report size-induced collapse of charge ordering in nanoparticles of La0.5Ca0.5MnO3 (LCMO). This happens when the particle size ≈100 nm or below. The investigation shows that a tuning of size can tune the nature of ground state in manganites. The particles were synthesized by sol-gel route (polyol based) and were characterized by X-ray-diffraction (XRD) and Transmission Electron Microscope (TEM). The collapse of charge ordering stabilizes the ferromagnetic phase with metallic character. The resulting phase appears to be electronically phase segregated. We base our conclusions on detailed magnetization and resistivity measurements as well as the evolution of the structure on size reduction. The observed data have been e...
The charge ordering in Nd0.5Si0.5MnO3(<rA> = 1.24 Å), which occurs on cooling the ferroma...
We show from conventional magnetization measurements that the charge order (CO) is completely suppre...
We have studied a weak charge-ordering behavior in phase separated (Ln1/3Sm2/3)2/3Ca1/3MnO3 (Ln=Pr a...
The bulk and nanocrystalline samples of half doped, rare earth, perovskite manganites, Ln<sub>0.5</s...
In this paper we report the structural, magnetic, and transport properties of nanoparticles of Pr<SU...
We have employed the highly sensitive electron magnetic resonance technique complimented by magnetiz...
A series of Pr0.55Ca0.45MnO3 compounds with average particle size ranging from 2000 to 30 nm have be...
We have shown, using high resolution X-ray diffraction studies of nanoparticles, that size reduction...
We report on the variations of magnetic properties of nanosized manganites both of the phase La0.63C...
In this paper, we report an investigation of the ferromagnetic state and the nature of ferromagnetic...
The electron-doped magnetic nanoparticles of Ca1-xYxMnO3 (x = 0, 0.05, 0.10, 0.15, 0.20, and 0.30) ...
We have studied a weak charge-ordering behavior in phase separated (Ln(1/3)Sm(2/3))(2/3)Ca1/3MnO3 (L...
Grain size has marked effects on charge-ordering and other properties of Nd<SUB>0.5</SUB>A<SUB>0...
Charge ordering in L1−xAxMnO3 (L=rare earth , A=Ca, Sr)) depends strongly on the width of the eg ban...
Half-doped praseodymium manganites, Pr0.5Ca0.5MnO3, synthesized by the sol–gel method produce highly...
The charge ordering in Nd0.5Si0.5MnO3(<rA> = 1.24 Å), which occurs on cooling the ferroma...
We show from conventional magnetization measurements that the charge order (CO) is completely suppre...
We have studied a weak charge-ordering behavior in phase separated (Ln1/3Sm2/3)2/3Ca1/3MnO3 (Ln=Pr a...
The bulk and nanocrystalline samples of half doped, rare earth, perovskite manganites, Ln<sub>0.5</s...
In this paper we report the structural, magnetic, and transport properties of nanoparticles of Pr<SU...
We have employed the highly sensitive electron magnetic resonance technique complimented by magnetiz...
A series of Pr0.55Ca0.45MnO3 compounds with average particle size ranging from 2000 to 30 nm have be...
We have shown, using high resolution X-ray diffraction studies of nanoparticles, that size reduction...
We report on the variations of magnetic properties of nanosized manganites both of the phase La0.63C...
In this paper, we report an investigation of the ferromagnetic state and the nature of ferromagnetic...
The electron-doped magnetic nanoparticles of Ca1-xYxMnO3 (x = 0, 0.05, 0.10, 0.15, 0.20, and 0.30) ...
We have studied a weak charge-ordering behavior in phase separated (Ln(1/3)Sm(2/3))(2/3)Ca1/3MnO3 (L...
Grain size has marked effects on charge-ordering and other properties of Nd<SUB>0.5</SUB>A<SUB>0...
Charge ordering in L1−xAxMnO3 (L=rare earth , A=Ca, Sr)) depends strongly on the width of the eg ban...
Half-doped praseodymium manganites, Pr0.5Ca0.5MnO3, synthesized by the sol–gel method produce highly...
The charge ordering in Nd0.5Si0.5MnO3(<rA> = 1.24 Å), which occurs on cooling the ferroma...
We show from conventional magnetization measurements that the charge order (CO) is completely suppre...
We have studied a weak charge-ordering behavior in phase separated (Ln1/3Sm2/3)2/3Ca1/3MnO3 (Ln=Pr a...