Bae Sunwoong, Han Hyeji, Bae Jin Gook, Lee Eun Yeol, Im Sang Hyuk, Kim Do Hyun, Seo Tae Seok
Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.
Department of Chemical Engineering, College of Engineering, Kyung Hee University, 1 Seochon-dong, Giheung-gu, Yongin-si, Gyeonggi-do, 17104, Republic of Korea.
Small. 2017 Jun;13(21). doi: 10.1002/smll.201603392. Epub 2017 Apr 7.
A "Polyol" method has granted low-cost and facile process-controllability for silver-nanowire (Ag-NW) synthesis. Although homogenous and heterogeneous nucleation and growth during Ag-NW synthesis are possible using polyol methods, heterogeneous nucleation and growth of Ag NW guarantees highly selective growth of nanostructures using silver chloride (AgCl) seeds, which provides a stable source of chloride ions (Cl-) and thermodynamic reversibility. In this paper, a microdroplet has been adopted to synthesize uniform AgCl seeds with different diameter that are used for seed-mediated Ag-NW synthesis. The concentration of two precursors (AgNO and NaCl) in the droplets is modulated to produce different sizes of AgCl seeds, which determines the diameter and length of Ag NWs. The process of the seed-mediated growth of Ag NWs has been monitored by observing the peak shift in the time-resolved UV-vis extinction spectrum. Furthermore, the distinct plasmonic property of Ag NWs for transverse and longitudinal localized-surface-plasmon-resonance (LSPR)-mediated fluorescence enhancement is utilized. The high aspect ratio and sharp tips work as simple antennas that induce the enhanced fluorescence emission intensity of a fluorophore, which can be applied in the fields of biological tissue imaging and therapy.
“多元醇”法为银纳米线(Ag-NW)的合成提供了低成本且易于控制的工艺。尽管使用多元醇法在Ag-NW合成过程中可能发生均相和非均相成核与生长,但Ag NW的非均相成核与生长保证了使用氯化银(AgCl)晶种实现纳米结构的高度选择性生长,AgCl晶种提供了稳定的氯离子(Cl-)来源和热力学可逆性。在本文中,采用微滴来合成不同直径的均匀AgCl晶种,这些晶种用于晶种介导的Ag-NW合成。调节微滴中两种前驱体(AgNO和NaCl)的浓度以产生不同尺寸的AgCl晶种,这决定了Ag NW的直径和长度。通过观察时间分辨紫外可见消光光谱中的峰移来监测Ag NW晶种介导生长的过程。此外,利用了Ag NW对于横向和纵向局域表面等离子体共振(LSPR)介导的荧光增强的独特等离子体特性。高纵横比和尖锐的尖端起到简单天线的作用,可诱导荧光团的荧光发射强度增强,这可应用于生物组织成像和治疗领域。