Firestone Millicent A, Dietz Mark L, Seifert Sönke, Trasobares Susana, Miller Dean J, Zaluzec Nestor J
Materials Science Division, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439, USA.
Small. 2005 Jul;1(7):754-60. doi: 10.1002/smll.200500030.
Photochemical reduction of tetrachloroaurate (AuCl4-) ions in the highly constrained aqueous domains of a nanostructured ionogel template, formed via self-assembly of the ionic liquid 1-decyl-3-methylimidazolium chloride (C10mim+Cl-) in water, results in the formation of anisotropic gold nanoparticles with a variety of sizes and morphologies, which include previously unattainable trigonal prismatic nanorods. Unexpectedly, small-angle X-ray scattering studies of the Au-ionogel composite reveal that the in situ formation of the nanoparticles increases the mesoscopic order of the ionogel, which results in its conversion to a near-monodomain structure. The findings demonstrate that nanostructured, ionic liquid-based gels can be used to template the formation of new nanoparticle morphologies with technologically important optical, electronic, and catalytic properties. It may also be possible to design soft templates that permit the fabrication of highly ordered nanoparticle array-hydrogel composites, thereby enabling control and tuning of the collective properties of the encapsulated nanoparticles.
通过离子液体1-癸基-3-甲基咪唑鎓氯化物(C10mim + Cl-)在水中自组装形成的纳米结构离子凝胶模板的高度受限水相中,四氯金酸根(AuCl4-)离子的光化学还原导致形成具有各种尺寸和形态的各向异性金纳米颗粒,其中包括以前无法获得的三角棱柱形纳米棒。出乎意料的是,对金-离子凝胶复合材料的小角X射线散射研究表明,纳米颗粒的原位形成增加了离子凝胶的介观有序性,从而导致其转变为近单畴结构。这些发现表明,基于离子液体的纳米结构凝胶可用于模板化具有重要技术光学、电子和催化性能的新型纳米颗粒形态的形成。还可能设计出允许制造高度有序的纳米颗粒阵列-水凝胶复合材料的软模板,从而实现对封装纳米颗粒集体性能的控制和调节。