Magnetotransport of La0.70ca0.3-xsrxmno3 (Ag): A Potential Room Temperature Bolometer and Magnetic Sensor
V.P.S. Awana, Rahul Tripathi, Neeraj Kumar, H. Kishan (NPL, New Delhi,, India) G.L. Bhalla (Delhi Univ., India), R. Zeng (UOW, Australia), L.S., Sharth Chandra (RRCAT, Indore India), V. Ganesan (UGC-DAE-CSR, Indore, India), and H.U. Habermeier (MPI-Stuttgart, Germany)

TL;DR
This study optimizes magnetotransport properties of La0.70Ca0.3-xSrxMnO3 and Ag composites, achieving high TCR and MR at room temperature, suitable for bolometers and magnetic sensors.
Contribution
It demonstrates how simultaneous Sr and Ag doping enhances room temperature TCR and MR in polycrystalline manganites for sensor applications.
Findings
Maximum TCR of 9% at 300 K.
Magneto-resistance of 20-30% at 5-10 kOe.
Sharp paramagnetic-ferromagnetic transition near 300 K.
Abstract
Here we report the optimized magneto-transport properties of polycrystalline La0.70Ca0.3-xSrxMnO3 and their composites with Ag. The optimization was carried out by varying the Sr and Ag contents simultaneously to achieve large temperature coefficient of resistance (TCR) as well as low field magneto-resistance (MR) at room temperature. Sharpest paramagnetic (PM)-ferromagnetic (FM) and insulator-metal (IM) transition is observed in the vicinity of the room temperature (TC=300 K=TIM) for the composition La0.70Ca0.20Sr00.10MnO3:Ag0.20. Partial substitution of larger Sr2+ ions at the Ca2+ ions sites controls the magnitude of the FM and IM transition temperatures, while the Ag induces the desired sharpness in these transitions. For the optimized composition, maximum TCR and MR are tuned to room temperature (300 K) with the former being as high as 9% and the later being 20 and 30 percent at 5…
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