School of Physics and Technology, Key Laboratory of Artificial Micro/Nano Structures of Ministry of Education, Wuhan University, Wuhan 430072, China.
Nanoscale. 2016 Oct 27;8(42):18121-18133. doi: 10.1039/c6nr04972a.
The properties of nanomaterials are highly dependent on their size, shape and composition. Compared with zero-dimensional nanoparticles, the increased dimension of a one-dimensional silver nanowire (AgNW/Ag NW) leads to extra challenges on synthesizing it with controllable sizes. Here, a convenient way for the synthesis of AgNWs with tunable sizes has been developed simply by adjusting the amount of salt additives, i.e., ferric chloride (FeCl), or Fe(NO) & KCl. The average diameter and length of nanowires are readily tailored within 45-220 nm and 10-230 μm, respectively. The distinctive roles of Fe and Cl played during the growth stages of Ag NWs were revealed by comparative experiments and a heterogeneous nucleation model with the assistance of oxidative etching was proposed to elucidate the growth mechanism. Afterwards, transformations in XRD patterns from nanometer-size effects and quantitative relation for size-dependent peak wavelength of surface plasmon resonances (SPRs) in UV-vis spectroscopy of these nanowires were studied. In addition, as transparent conductive materials (TCMs), these metal nanowires were utilized to fabricate transparent conductive films (TCFs), and the effects of their diameters and lengths were elucidated. Very/ultra-long nanowires with a high aspect ratio up to 1600 achieved impressive properties of R = 12.4 ohm sq at T% = 90.1% without any post treatment. This facile method for the size-tunable growth of uniform AgNWs with high yield is attractive and ready to be home-made, which is believed to promote research in their potential applications, especially in optoelectronic devices and flexible electronics.
纳米材料的性质高度依赖于其尺寸、形状和组成。与零维纳米颗粒相比,一维银纳米线(AgNW/AgNW)的维度增加导致其可控尺寸合成具有额外的挑战。在这里,通过简单地调整盐添加剂的量,即氯化铁(FeCl)或 Fe(NO)&KCl,开发了一种合成具有可调尺寸的 AgNW 的简便方法。纳米线的平均直径和长度可以在 45-220nm 和 10-230μm 之间轻松调节。通过对比实验揭示了 Fe 和 Cl 在 AgNW 生长阶段的独特作用,并提出了一个具有氧化刻蚀辅助的异质成核模型来阐明生长机制。随后,研究了这些纳米线的 XRD 图谱中从纳米尺寸效应引起的转变以及表面等离子体共振(SPR)的尺寸依赖峰波长的定量关系在紫外可见光谱中的变化。此外,作为透明导电材料(TCMs),这些金属纳米线被用于制造透明导电薄膜(TCFs),并阐明了它们的直径和长度的影响。具有高达 1600 的高纵横比的超长/超纳米线在未经任何后处理的情况下,在 T%=90.1%时实现了 R=12.4 欧姆平方的令人印象深刻的性能。这种用于高产量、尺寸可调的均匀 AgNW 生长的简便方法具有吸引力,并且可以自制,这有望促进其潜在应用的研究,特别是在光电设备和柔性电子领域。