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Negative and anomalous T-dependent magnetization trend in CoCr2O4 nanoparticles

机译:COCR2O4纳米粒子的阴性和异常T依赖磁化趋势

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We studied the temperature dependent magnetic properties of cobalt chromite (CoCr2O4) nanoparticles. X-ray diffraction revealed the cubic spinel structure of the nanoparticles and average crystallite size was about 42 nm. Raman and Fourier transform infrared spectroscopy confirmed the formation of single phase spinel structure. ZFC/FC curves revealed a paramagnetic (PM) to ferromagnetic (FiM) transition at T-C = 100 K with conical spiral state at T-S = 27 K and lock-in state at T-L = 13 K. Negative magnetization is observed in the ZFC curve under 50 Oe applied field, which gets suppressed upon the application of higher field. The TC was shifted towards higher temperature with the application of higher field, while T-S and T-L remain unaffected. M-H loops showed FiM behavior below 100 K and nearly PM at T-C = 100 K. Below 75 K, an abnormal decrease in MS is observed down to 5 K, which may be due to presence of stiffed/strong conical spin spiral and lock in states at low temperatures. Modified Kneller's law showed a good fit for temperature dependent H-c at higher temperature and deviated at low temperature (<25 K) which was attributed to frozen disordered surface spins. Nanoparticles showed slow spin relaxation in both ZFC and FC protocols at 5 K, which signifies the presence of spin-glass like behavior at low temperatures. Both curves were fitted with stretched exponential law and the value of b lies in the spin-glass regime. In summary, CoCr2O4 nanoparticles showed anomalous decrease of MS with decreasing temperature, negative magnetization at low field and rather stiffed/strong conical spin spiral and lock-in states in combination with spin-glass behavior at the low temperatures. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:我们研究了钴铬铁矿(COCR2O4)纳米颗粒的温度依赖性磁性。 X射线衍射显示纳米颗粒的立方尖晶石结构和平均微晶尺寸为约42nm。拉曼和傅立叶变换红外光谱证实了单相尖晶石结构的形成。 ZFC / FC曲线揭示了在TC = 100K的锥形脉磁性(FIM)转变的顺磁性(PM),在TS = 27k处,TL = 13k的锁定状态下锁定状态。在ZFC曲线下观察到负磁化50 OE施加的字段,在更高场的应用时被抑制。随着较高场的施加,TC向较高的温度变化,而T-S和T-L保持不受影响。 MH环在TC = 100k下显示FIM行为和接近PM = 100k。低于75 k,观察到MS的异常降低至5 k,这可能是由于存在僵硬/强锥形旋转螺旋和锁定在状态下存在在低温下。改良的膝关节的定律表现出较高温度的温度依赖性H-C的良好,并且偏离低温(<25 k),归因于冷冻无序的表面旋转。纳米颗粒在5 k下显示ZFC和Fc方案中的缓慢旋转弛豫,其表示在低温下的旋转玻璃的存在。两条曲线都配有拉伸指数律,B的值在于旋转玻璃制度。总之,Cocr2O4纳米颗粒在低场中的温度下降,负极磁化下的温度下降,负磁化下的阴性磁化和锁定状态,与低温下的旋转玻璃行为相结合。 (c)2017年Elsevier Masson SAS。版权所有。

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