首页> 外文期刊>Applied Surface Science >La_(0.67)(Ca_(0.24)Sr_(0.09))MnO_3:xAg_20 (0 ≤ x ≤ 0.25) composites with improved room-temperature TCR and MR for advanced uncooling infrared bolometers and magnetic sensors
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La_(0.67)(Ca_(0.24)Sr_(0.09))MnO_3:xAg_20 (0 ≤ x ≤ 0.25) composites with improved room-temperature TCR and MR for advanced uncooling infrared bolometers and magnetic sensors

机译:具有改进的室温TCR和MR的La_(0.67)(Ca_(0.24)Sr_(0.09))MnO_3:xAg_20(0≤x≤0.25)复合材料,用于先进的不制冷红外测辐射热计和磁传感器

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In this research, high-density La-0.67(Ca0.24Sr0.09)MnO3:xAg(2)O (LCSMO: xAg(2)O, x = 0, 0.05, 0.1. 0.15, 0.2, and 0.25) composites were successfully fabricated through the conventional sol-gel method. Scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS) and XRD data confirmed presence of silver at A sites (La3+/Ca2+/Sr2+) as Ag+ and segregates at grain boundaries (GBs) to form metallic silver. The electrical properties greatly improved by adding Ag2O. Significant enhancements in peak temperature coefficient of resistivity (TCR) and magnetoresistance (MR) at room-temperature (300 K) were observed for LCSMO:xAg(2)O composites. The peak TCR increased from 3.7% K-1 (299.3 K, for x = 0) to 14.8% K-1 (301.0 K, for x = 0.2), and MR rose from 16.9% (303.0 K, for x = 0) to 34.1% (300.6 K, for x = 0.2). These improvements in peak TCR were attributed to increased grain size and formation of metallic silver at GBs or within the composites. Moreover, peak MR was higher in Ag2O doped composites, which was mainly due to large spin polarization effect and strong coupling ferromagnetic domains under external magnetic field. Overall, the large room-temperature TCR and MR values of LCSMO:0.2Ag(2)O composites look promising for future advanced uncooling infrared bolometers and magnetic sensors.
机译:在这项研究中,高密度La-0.67(Ca0.24Sr0.09)MnO3:xAg(2)O(LCSMO:xAg(2)O,x = 0,0.05,0.1。0.15,0.2和0.25)复合材料是通过常规的溶胶-凝胶法成功制备。扫描电子显微镜(SEM),X射线光电子能谱(XPS)和XRD数据证实,银在A位点(La3 + / Ca2 + / Sr2 +)处以Ag +的形式存在,并在晶界(GBs)处偏析形成金属银。通过添加Ag2O,电性能大大提高。对于LCSMO:xAg(2)O复合材料,在室温(300 K)下,峰值电阻系数(TCR)和磁阻(MR)的峰值温度系数得到了显着提高。峰值TCR从3.7%K-1(对于x = 0为299.3 K)增加到14.8%K-1(对于x = 0.2为301.0 K,MR)从16.9%(对于x = 0而言为303.0 K)上升到34.1%(300.6 K,x = 0.2)。峰值TCR的这些改善归因于晶粒尺寸的增加和在GB处或在复合物中的金属银的形成。而且,Ag2O掺杂的复合材料的MR峰值较高,这主要是由于自旋极化效应大以及在外部磁场下强耦合铁磁畴的缘故。总体而言,LCSMO:0.2Ag(2)O复合材料的大室温TCR和MR值有望用于未来的先进的非冷却红外测辐射热计和磁性传感器。

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