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首页> 外文期刊>Journal of Applied Physics >Metal-organic Vapor Phase Epitaxy Of Crystallographically Oriented Mnp Magnetic Nanoclusters Embedded In Gap(001)
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Metal-organic Vapor Phase Epitaxy Of Crystallographically Oriented Mnp Magnetic Nanoclusters Embedded In Gap(001)

机译:嵌入间隙(001)的晶体取向Mnp磁性纳米簇​​的金属有机气相外延。

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Hybrid ferromagnetic-semiconductor GaP:MnP thin films were grown at 650 ℃ by metal-organic vapor phase epitaxy on GaP(001) using trimethylgallium, tertiarybutylphosphine, and methyl cyclopentadienyl manganese tricarbonyl (MCTMn). Overall Mn concentrations in the hybrid films, determined by Rutherford backscattering spectrometry, were found to be nearly proportional to the MCTMn precursor gas flow rate and ranged from 2 to 3.5 at. %. Cross-sectional transmission electron microscopy (TEM) analyses revealed the presence of a homogeneous distribution of 15-30 nm wide nanoclusters in a dislocation-free GaP matrix that is fully coherent with the substrate. The nanocluster facets are predominantly aligned along the (220) planes of the GaP matrix and selected-area electron diffraction patterns in TEM indicate that the nanoclusters are coherent (or semicoherent) with the single-crystal GaP matrix. The Mn:P composition ratio in the nanoclusters was determined to be 1.00 ±0.05 from parallel electron energy loss spectroscopy analyses. Increasing the MCTMn flow rate during film growth resulted in an increased concentration of MnP nanoclusters in the epilayer while their dimensions remained virtually unchanged. Magnetometric characterization indicates a ferromagnetic order, with a Curie temperature of about 294 K, originating from the MnP clusters.
机译:利用三甲基镓,叔丁基膦和甲基环戊二烯基锰三羰基锰(MCTMn)在GaP(001)上通过金属-有机气相外延在650℃下生长混合铁磁半导体GaP:MnP薄膜。通过卢瑟福反向散射光谱法测定,杂化薄膜中的总Mn浓度几乎与MCTMn前驱物气体流速成正比,范围为2至3.5 at。 %。横截面透射电子显微镜(TEM)分析显示,在与基底完全连贯的无位错GaP基质中存在15-30 nm宽的纳米团簇均匀分布。纳米簇小平面主要沿着GaP矩阵的(220)平面排列,并且TEM中的选定区域电子衍射图表明纳米簇与单晶GaP矩阵是相干的(或半相干的)。通过平行电子能量损失光谱分析确定纳米团簇中的Mn:P组成比为1.00±0.05。在膜生长过程中增加MCTMn流速会导致外延层中MnP纳米团簇的浓度增加,而其尺寸实际上保持不变。磁特性描述表明铁磁性有序,居里温度约为294 K,源自MnP团簇。

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