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首页> 外文期刊>Journal of Applied Physics >Substantial magnetoelectric coupling in nanocrystalline-Fe_2TeO_6 at room temperature
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Substantial magnetoelectric coupling in nanocrystalline-Fe_2TeO_6 at room temperature

机译:室温下纳米晶Fe_2TeO_6中的大量磁电耦合

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摘要

Nanocrystalline Fe2TeO6 (FTO) is synthesized following the sol-gel process. The nanoaspect of FTO is confirmed from transmission electron microscopy, where the particles of sizes 10-40 nm are seen. Magnetic measurement on nano-FTO confirms the antiferromagnetic nature of particles having Neel temperature T-N = 167 K, which is very much lower than that of bulk (210 K). Polarization verses electric field loop measurement at room temperature (RT) gives the remanent polarization (P-r) value of 0.098 mu C/cm(2), confirming ferroelectricity in FTO. A nonmonotonous increase in the remanent polarization is noticed when an external magnetic field is applied on the sample. This is a clear indication of prevailing substantial magnetoelectric (ME) coupling in the sample at room temperature. The quantification of magnetoelectricity is done by directly measuring the ME voltage (V) in the presence of varying dc magnetic field (H), and the ME coefficients are obtained using a quadratic relation in H. The values so obtained for the first order (alpha/d), second order (beta/d), and third order (gamma/d) ME coefficients are similar to 0.22mV cm(-1)Oe(-1), similar to-1.70 x 10(-2) mVcm(-1)Oe(-2), and similar to 0.72 x 10(-6) mVcm(-1) Oe(-3), respectively. The presence of ferroelectricity and magnetoelectricity above the Neel temperature is a very unusual phenomenon in this material. The presence of short range magnetic ordering which prevails even up to RT, much higher than that of long range magnetic ordering temperature, is suspected to be responsible for this. Published by AIP Publishing.
机译:纳米晶态的Fe2TeO6(FTO)是按照溶胶-凝胶法合成的。 FTO的纳米范围由透射电子显微镜确认,可以看到尺寸为10-40 nm的颗粒。纳米FTO上的磁性测量证实了Neel温度T-N = 167 K的粒子的反铁磁性质,该温度远低于本体温度(210 K)。极化与室温(RT)下的电场环路测量相比,剩余极化(P-r)值为0.098μC / cm(2),这证实了FTO中的铁电性。当外部磁场施加在样品上时,剩余极化强度非单调增加。这清楚地表明了室温下样品中普遍存在的磁电(ME)耦合。磁电的量化是通过在存在变化的直流磁场(H)的情况下直接测量ME电压(V)来完成的,ME系数是使用H的二次关系获得的。这样获得的一阶值(alpha / d),二阶(beta / d)和三阶(gamma / d)ME系数类似于0.22mV cm(-1)Oe(-1),类似于1.70 x 10(-2)mVcm( -1)Oe(-2),分别类似于0.72 x 10(-6)mVcm(-1)Oe(-3)。在尼尔温度以上,铁电和磁电的存在是这种材料中非常罕见的现象。据推测,造成这种现象的原因可能是短程电磁有序,甚至在室温下仍然存在,远高于长程电磁有序温度。由AIP Publishing发布。

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