Hong B H, Bae S C, Lee C W, Jeong S, Kim K S
National Creative Research Initiative Center for Superfunctional Materials, Department of Chemistry, Division of Molecular and Life Sciences, Pohang University of Science and Technology, Hyojadong, Namgu, Pohang 790-784, Korea.
Science. 2001 Oct 12;294(5541):348-51. doi: 10.1126/science.1062126. Epub 2001 Sep 6.
We report the synthesis of single-crystalline silver nanowires of atomic dimensions. The ultrathin silver wires with 0.4 nanometer width grow up to micrometer-scale length inside the pores of self-assembled calix[4]hydroquinone nanotubes by electro-/photochemical redox reaction in an ambient aqueous phase. The present subnanowires are very stable under ambient air and aqueous environments, unlike previously reported metal wires of approximately 1 nanometer diameter, which existed only transiently in ultrahigh vacuum. The wires exist as coherently oriented three-dimensional arrays of ultrahigh density and thus could be used as model systems for investigating one-dimensional phenomena and as nanoconnectors for designing nanoelectronic devices.
我们报道了原子尺寸的单晶银纳米线的合成。宽度为0.4纳米的超薄银线通过在环境水相中进行电化学/光化学氧化还原反应,在自组装对苯二酚杯[4]纳米管的孔内生长至微米级长度。与之前报道的直径约为1纳米的金属线不同,目前的亚纳米线在环境空气和水环境下非常稳定,之前报道的金属线仅在超高真空中短暂存在。这些线以超高密度的相干取向三维阵列形式存在,因此可作为研究一维现象的模型系统以及设计纳米电子器件的纳米连接器。