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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >DNA stretching on one-sided carbon nanotube (CNT) walls in microchannels
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DNA stretching on one-sided carbon nanotube (CNT) walls in microchannels

机译:DNA在微通道的一侧碳纳米管(CNT)壁上拉伸

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摘要

Completely stretched DNA molecules are becoming an important topic to advance our fundamental understanding of the physical and biological properties of DNA. In this study,. phage DNA molecules are stretched on multi-walled carbon nanotube (MWCNT) films on the wall surfaces in a microchannel and measured through the total internal reflection fluorescence microscopy visualization/measuring technique. With DNA stretching in a definite direction, it is expected that a higher stretch ratio will be obtained. Real-time images show that the stretch ratio of the. phage DNA molecules on the MWCNT walls reaches about 0.7 (relative to its contour length) at a low electrical field strength of 5 kV m(-1), which is significantly higher than without the MWCNT-deposited film. Special attention is paid to the effect of the MWCNT film thickness, the channel size, in terms of the aspect ratio of the channel cross-section and channel length, and different electrical field strengths.
机译:完全拉伸的DNA分子正成为提高我们对DNA的物理和生物学特性的基本了解的重要主题。在这个研究中,。噬菌体DNA分子在微通道壁表面的多壁碳纳米管(MWCNT)膜上拉伸,并通过全内反射荧光显微镜可视化/测量技术进行测量。随着DNA在确定方向上的拉伸,预期将获得更高的拉伸比。实时图像显示了拉伸比。 MWCNT壁上的噬菌体DNA分子在5 kV m(-1)的低电场强度下达到约0.7(相对于其轮廓长度),这明显高于没有MWCNT沉积膜的情况。特别要注意的是,MWCNT膜厚度,通道尺寸,通道横截面的纵横比和通道长度以及不同的电场强度的影响。

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