纳米棒
纳米机器人学
纳米技术
材料科学
微流控
纳米机电系统
光力学
光热治疗
光热效应
表面等离子共振
等离子体子
小型化
光电子学
纳米医学
纳米颗粒
谐振器
作者
Lei Shao,Zhong‐Jian Yang,Daniel Andrén,Peter Johansson,Mikael Käll
出处
期刊:ACS Nano
[American Chemical Society]
日期:2015-11-13
卷期号:9 (12): 12542-12551
被引量:122
标识
DOI:10.1021/acsnano.5b06311
摘要
Efficient and robust artificial nanomotors could provide a variety of exciting possibilities for applications in physics, biology and chemistry, including nanoelectromechanical systems, biochemical sensing, and drug delivery. However, the application of current man-made nanomotors is limited by their sophisticated fabrication techniques, low mechanical output power and severe environmental requirements, making their performance far below that of natural biomotors. Here we show that single-crystal gold nanorods can be rotated extremely fast in aqueous solutions through optical torques dominated by plasmonic resonant scattering of circularly polarized laser light with power as low as a few mW. The nanorods are trapped in 2D against a glass surface, and their rotational dynamics is highly dependent on their surface plasmon resonance properties. They can be kept continuously rotating for hours with limited photothermal side effects and they can be applied for detection of molecular binding with high sensitivity. Because of their biocompatibility, mechanical and thermal stability, and record rotation speeds reaching up to 42 kHz (2.5 million revolutions per minute), these rotary nanomotors could advance technologies to meet a wide range of future nanomechanical and biomedical needs in fields such as nanorobotics, nanosurgery, DNA manipulation and nano/microfluidic flow control.
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