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Signal transmission, conversion and multiplication by polar molecules confined in nanochannels

机译:信号传递,转换和乘以纳米通道中的极性分子

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The mechanism of signal transmission, conversion and multiplication at molecular level has been of great interest lately, due to its wide applications in nanoscience and nanotechnology. The interferences between authentic signals and thermal noises at the nanoscale make it difficult for molecular signal transduction. Here we review some of our recent progress on the signal transduction mediated by water and other polar molecules confined in nanochannels, such as Y-shaped carbon nanotubes. We also explore possible future directions in this emerging field. These studies on molecular signal conduction might have significance in future designs and applications of nanoscale electronic devices, and might also provide useful insights for a better understanding of signal conduction in both physical and biological systems.
机译:由于其在纳米科学和纳米技术中的广泛应用,在分子水平上的信号传输,转化和乘法的机制最近引起了人们的关注。 纳米级的真实信号和热噪声之间的干扰使得分子信号转导困难。 在这里,我们回顾了我们最近在纳米通道中的水和其他极性分子(例如Y形碳纳米管)中介导的信号转导的一些进展。 我们还探索了这个新兴领域的未来方向。 这些关于分子信号传导的研究可能在纳米级电子设备的未来设计和应用中具有重要意义,并且还可能提供有用的见解,以更好地理解物理和生物系统中的信号传导。

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