Kang Minhee, Park Sang-Gil, Jeong Ki-Hun
Korea Advanced Institute of Science and Technology (KAIST), Department of Bio and Brain Engineering and KAIST Institute for Optical Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.
Sci Rep. 2015 Oct 15;5:14790. doi: 10.1038/srep14790.
This work reports a facile wafer-level fabrication for nanogap-rich gold nanoislands for highly sensitive surface enhanced Raman scattering (SERS) by repeating solid-state thermal dewetting of thin gold film. The method provides enlarged gold nanoislands with small gap spacing, which increase the number of electromagnetic hotspots and thus enhance the extinction intensity as well as the tunability for plasmon resonance wavelength. The plasmonic nanoislands from repeated dewetting substantially increase SERS enhancement factor over one order-of-magnitude higher than those from a single-step dewetting process and they allow ultrasensitive SERS detection of a neurotransmitter with extremely low Raman activity. This simple method provides many opportunities for engineering plasmonics for ultrasensitive detection and highly efficient photon collection.
这项工作报道了一种通过重复固态热退火薄金膜来制备富含纳米间隙的金纳米岛的简便晶圆级制造方法,用于高灵敏度表面增强拉曼散射(SERS)。该方法提供了具有小间隙间距的扩大的金纳米岛,这增加了电磁热点的数量,从而提高了消光强度以及等离子体共振波长的可调性。通过重复退火得到的等离子体纳米岛显著提高了SERS增强因子,比单步退火过程提高了一个数量级以上,并且它们允许对具有极低拉曼活性的神经递质进行超灵敏SERS检测。这种简单的方法为设计用于超灵敏检测和高效光子收集的等离子体学提供了许多机会。