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Ferromagnetic ZnO Nanocrystals and Al-induced Defects

机译:铁磁ZnO纳米晶体和Al引起的缺陷

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摘要

ZnO nanocrystals (NCs) capped with polyvinyl pyrrolidone reveal room temperature ferromagnetism. Incorporation of Al3+-ions induce defects in ZnO NCs leading to quenching of excitonic luminescence of ZnO at the cost of an increase in the intensity of oxygen vacancy related emission. Photoluminescence excitation spectra exhibit an additional hump like feature attributed to Al-doping. Saturation magnetization of Al3+-doped ZnO NCs is the same as that of the undoped ZnO NCs. However, a remarkable decrease in the coercivity associated with change in the nature of M (T) curve and electron paramagnetic resonance signal with g = 1.96 is observed consequent to Al doping. The results provide direct evidence of the defects within the core of NCs that are responsible for the ferromagnetic ordering in the Al3+-doped ZnO. The M(T) curve unravels a typical exchange mechanism.
机译:聚乙烯吡咯烷酮覆盖的ZnO纳米晶体(NCs)揭示了室温铁磁性。 Al 3+离子的引入会引起ZnO NCs中的缺陷,从而导致ZnO的激子发光猝灭,其代价是增加了与氧空位相关的发射强度。光致发光激发光谱表现出额外的峰状特征,这归因于铝掺杂。掺杂Al3 +的ZnO NCs的饱和磁化强度与未掺杂的ZnO NCs相同。然而,由于Al掺杂,观察到与M(T)曲线的性质的变化相关联的矫顽力显着下降,并且电子顺磁共振信号具有g = 1.96。结果提供了直接的证据,证明了NC核心内部的缺陷,这些缺陷是Al3 +掺杂的ZnO中铁磁有序的原因。 M(T)曲线揭示了一种典型的交换机制。

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