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Room temperature ferromagnetism in liquid-phase pulsed laser ablation synthesized nanoparticles of nonmagnetic oxidesud

机译:液相脉冲激光烧蚀室温铁磁性合成了非磁性氧化物纳米粒子

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摘要

Intrinsic Room Temperature Ferromagnetism (RTF) has been observed in undoped/uncapped zinc oxide and titanium dioxide spherical nanoparticles (NPs) obtained by a purely green approach of liquid phase pulsed laser ablation of corresponding metal targets in pure water. Saturation magnetization values observed for zinc oxide (average size, 9 +/- 1.2 nm) and titanium dioxide (average size, 4.4 +/- 0.3 nm) NPs are 62.37 and 42.17 memu/g, respectively, which are several orders of magnitude larger than those of previous reports. In contrast to the previous works, no postprocessing treatments or surface modification is required to induce ferromagnetism in the case of present communication. The most important result, related to the field of intrinsic ferromagnetism in nonmagnetic materials, is the observation of size dependent ferromagnetism. Degree of ferromagnetism in titanium dioxide increases with the increase in particle size, while it is reverse for zinc oxide. Surface and volume defects play significant roles for the origin of RTF in zinc oxide and titanium dioxide NPs, respectively. Single ionized oxygen and neutral zinc vacancies in zinc oxide and oxygen and neutral/ionized titanium vacancies in titanium dioxide are considered as predominant defect centres responsible for observed ferromagnetism. It is expected that origin of ferromagnetism is a consequence of exchange interactions between localized electron spin moments resulting from point defects. ud
机译:在纯净水中通过液相脉冲激光烧蚀相应金属靶材的纯绿色方法获得的未掺杂/未封端的氧化锌和二氧化钛球形纳米颗粒(NPs)中已经观察到本征室温铁磁性(RTF)。氧化锌(平均尺寸,9 +/- 1.2 nm)和二氧化钛(平均尺寸,4.4 +/- 0.3 nm)NPs观察到的饱和磁化强度分别为62.37和42.17 memu / g,比它们大几个数量级比以前的报告。与以前的工作相反,在当前通信的情况下,不需要后处理或表面改性即可诱导铁磁性。与非磁性材料的本征铁磁性领域有关,最重要的结果是对尺寸依赖性铁磁性的观察。二氧化钛中的铁磁性程度随粒度的增加而增加,而氧化锌则相反。表面缺陷和体积缺陷分别对RTF起源于氧化锌和二氧化钛NP中起着重要作用。氧化锌中的单离子氧和中性锌空位以及二氧化钛中的氧和中性/离子化钛空位被认为是造成观察到的铁磁性的主要缺陷中心。可以预期,铁磁性的起源是由点缺陷引起的局部电子自旋矩之间交换相互作用的结果。 ud

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