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Structural, Morphological and infrared detection properties of Mn-Co-Ni-O spinel oxide films

机译:Mn-Co-Ni-O尖晶石氧化物薄膜的结构,形态和红外检测性能

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Mn-Co-Ni-O spinel oxide materials, with the prototype of AB_2O_4, are excelled in uncooled thermal sensing and infrared detection due to its high absolute NTC value and moderate resistivity at room temperature. In this work, Mn_(1.56)Co_(0.96)Ni_(0.48)O_4 film (MCN-CSD) and Mn_(1.40)Co_(1.00)Ni_(0.60)O_4 (MCN-RF) film are fabricated on amorphous sapphire substrate with chemical solution method (CSD) and radio frequency deposition method (RF), respectively. Morphological characteristics are revealed by SEM graphs. And the result shows that MCN films acquire better crystalline properties and compactness than MCN bulk materials. To verify the excellent features for infrared detection, detectors sized 1mm~2 × 0.17 μm and 1 mm~2 × 0.33 μm are fabricated based on MCN-RF and MCN-CSD films, respectively. The excess noise at 11 Hz for each detector has been tested and the Hooge's parameters have been calculated. The MCN films obtained by RF deposition and CSD method both show γ value of about 2×10~(-21) cm~3, an order lower than bulk MCN and amorphous silicon, which indicates great potentials in integrated infrared detection.
机译:具有AB_2O_4原型的Mn-Co-Ni-O尖晶石氧化物材料具有很高的绝对NTC值和在室温下中等的电阻率,因此在非制冷热传感和红外检测方面表现出色。在这项工作中,Mn_(1.56)Co_(0.96)Ni_(0.48)O_4膜(MCN-CSD)和Mn_(1.40)Co_(1.00)Ni_(0.60)O_4(MCN-RF)膜在具有无定形蓝宝石衬底上制造,化学溶液法(CSD)和射频沉积法(RF)。 SEM图揭示了形态特征。结果表明,MCN薄膜比MCN块状材料具有更好的结晶性和致密性。为了验证红外检测的卓越功能,分别基于MCN-RF和MCN-CSD薄膜制造了尺寸分别为1mm〜2×0.17μm和1 mm〜2×0.33μm的检测器。已测试了每个探测器在11 Hz处的多余噪声,并计算了Hooge的参数。通过RF沉积和CSD方法获得的MCN膜均显示出约2×10〜(-21)cm〜3的γ/ n值,比体MCN和非晶硅低一个数量级,这表明在集成红外检测中有很大的潜力。

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