Wu Zhe, Sun Wei-Qiang, Feng Tao, Tang Shawn Wenjie, Li Gang, Jiang Kai-Li, Xu Sheng-Yong, Ong Chong Kim
Centre for Superconducting and Magnetic Materials, Department of Physics, National University of Singapore, Singapore 117542, Singapore; National Laboratory for Vacuum Electronics, School of Physical Electronics, University of Electronic Science and Technology of China, Chengdu 610054, PR China.
Singapore Synchrotron Light Source, National University of Singapore, Singapore 117603, Singapore.
Ultramicroscopy. 2015 Jan;148:75-80. doi: 10.1016/j.ultramic.2014.09.008. Epub 2014 Oct 6.
In this manuscript, a near-field scanning microwave microscope (NSMM) of our own design is introduced while using a multi-walled carbon nanotube (MWCNT) bundle as the tip (referred to as 'CNT tip'). Clear images of gold-patterned numbers, photoresist stripes and corneal endothelial cells (cell line B4G12) were obtained by mapping the resonant frequency fr and S11 amplitude of a given area while the NSMM is operating in tapping mode. The CNT tip helps to improve image quality and reveals more information about the sample as compared to a traditional metallic tip. The CNT tip is flexible and does not scratch the surface of the sample during the scan, which is useful for imaging soft material in biological science. In the imaging of the B4G12 endothelial cells, the nuclei and cytoplasm can be clearly distinguished from the rest of the cell and its surrounding medium.
在本手稿中,介绍了我们自行设计的近场扫描微波显微镜(NSMM),该显微镜使用多壁碳纳米管束作为探针(称为“碳纳米管探针”)。在NSMM以轻敲模式运行时,通过绘制给定区域的共振频率fr和S11幅度,获得了金图案数字、光刻胶条纹和角膜内皮细胞(B4G12细胞系)的清晰图像。与传统金属探针相比,碳纳米管探针有助于提高图像质量并揭示更多关于样品的信息。碳纳米管探针具有柔韧性,在扫描过程中不会刮伤样品表面,这对于生物科学中软材料的成像很有用。在B4G12内皮细胞的成像中,细胞核和细胞质可以与细胞的其余部分及其周围介质清楚地区分开来。