Cheon Jinwoo, Kang Nam-Jung, Lee Sang-Min, Lee Jae-Hyun, Yoon Ji-Hyun, Oh Sang Jun
Department of Chemistry, Yonsei University, Seoul 120-749, Korea.
J Am Chem Soc. 2004 Feb 25;126(7):1950-1. doi: 10.1021/ja038722o.
Shape- and size-controlled synthesis of single-crystalline maghemite (gamma-Fe2O3) nanocrystals are performed by utilizing a solution-based one-step thermolysis method. Modulating the growth parameters, such as the type and amount of capping ligands as well as the growth time, is shown to have a significant effect on the overall shape and size of the obtained nanocrystals and on the ripening process itself. The resulting shapes of the novel structures are diverse, including slightly faceted spheres, diamonds, prisms, and hexagons, all of which are in fact truncated dodecahedron structures with different degrees of truncation along the {111}, {110}, or {100} faces. Spherical nanocrystals are easily assembled into the three-dimensional superlattices, demonstrating the uniformity of these nanocrystals. The size-dependent magnetic properties are examined, and large hexagon-shaped gamma-Fe2O3 nanocrystals are shown to be ferrimagnetic at room temperature.
通过使用基于溶液的一步热解方法来进行形状和尺寸可控的单晶磁赤铁矿(γ-Fe2O3)纳米晶体的合成。结果表明,调节生长参数,如封端配体的类型和用量以及生长时间,对所得纳米晶体的整体形状和尺寸以及熟化过程本身都有显著影响。新型结构的最终形状多种多样,包括略带刻面的球体、菱形、棱柱体和六边形,实际上所有这些都是沿{111}、{110}或{100}面具有不同截断程度的截顶十二面体结构。球形纳米晶体很容易组装成三维超晶格,证明了这些纳米晶体的均匀性。研究了尺寸依赖性磁性能,结果表明,大的六边形γ-Fe2O3纳米晶体在室温下具有亚铁磁性。