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Synthesis of Colloidal Mn2+:ZnO Quantum Dots and High-TC Ferromagnetic Nanocrystalline Thin Films

机译:胶体Mn2 +:ZnO量子点和高TC铁磁性纳米晶薄膜的合成

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摘要

We report the synthesis of colloidal Mn2+-doped ZnO (Mn2+:ZnO) quantum dots and the preparation of room-temperature ferromagnetic nanocrystalline thin films. Mn2+:ZnO nanocrystals were prepared by a hydrolysis and condensation reaction in DMSO under atmospheric conditions. Synthesis was monitored by electronic absorption and electron paramagnetic resonance (EPR) spectroscopies. Zn(OAc)2 was found to strongly inhibit oxidation of Mn2+ by O2, allowing the synthesis of Mn2+:ZnO to be performed aerobically. Mn2+ ions were removed from the surfaces of as-prepared nanocrystals using dodecylamine to yield high-quality internally doped Mn2+:ZnO colloids of nearly spherical shape and uniform diameter (6.1 ± 0.7 nm). Simulations of the highly resolved X- and Q-band nanocrystal EPR spectra, combined with quantitative analysis of magnetic susceptibilities, confirmed that the manganese is substitutionally incorporated into the ZnO nanocrystals as Mn2+ with very homogeneous speciation, differing from bulk Mn2+:ZnO only in the magnitude of D-strain. Robust ferromagnetism was observed in spincoated thin films of the nanocrystals, with 300 K saturation moments as large as 1.35 µB/Mn2+ and TC u3e 350 K. A distinct ferromagnetic resonance signal was observed in the EPR spectra of the ferromagnetic films. The occurrence of ferromagnetism in Mn2+:ZnO and its dependence on synthetic variables are discussed in the context of these and previous theoretical and experimental results.
机译:我们报告的胶体MN2 +的合成掺杂的ZnO(MN2 +:ZnO)的量子点和室温铁磁纳米晶体薄膜的制备。 MN2 +:氧化锌的纳米晶体是由大气条件下在DMSO中的水解和缩合反应来制备。合成是通过电子吸收和电子顺磁共振(EPR)光谱监测。的Zn(OAc)2,通过O2发现MN2 +的强烈抑制氧化,使MN2 +的合成:氧化锌被需氧执行。近球形的形状和均匀的直径(6.1±0.7纳米)的氧化锌胶体:MN2 +离子从使用十二烷基胺,得到高品质的内掺杂MN2 +如此制备的纳米晶体的表面除去。的高度解析X和Q带的模拟纳米晶体EPR谱,与磁化率的定量分析相结合,证实锰取代地并入的ZnO纳米晶体作为MN2 +具有非常均匀的形态,从大容量MN2 +不同:只在氧化锌d-应变的大小。在纳米晶体的旋涂薄膜中观察到鲁棒铁磁性,具有300K的饱和时刻一样大的强磁性膜的EPR谱中观察到1.35μB/ MN2 +和TC U3E 350 K.一个显着的铁磁共振信号。铁磁性的MN2 +的发生:ZnO和其上合成的变量的依赖在这些和先前理论和实验结果的上下文中讨论。

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