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Processing energy and signals by molecular and supramolecular systems

机译:通过分子和超分子系统处理能量和信号

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摘要

Any kind of device or machine requires a substrate, energy, and information signals. If we wish to operate at the nanometer scale, we must use molecules as substrates. Energy- and signal-processing at a molecular level relies on cause/effect relationships between the input supplied and the kind of process obtained. We have classified energy- and signal-processing at the molecular level according to the nature of the input (electronic, photonic, or chemical) and the nature of the obtained effect (electronic, photonic, or chemical process that follows). By coupling the three kinds of inputs with the three types of resulting processes, nine types of molecular-based processes (electronic, photonic, chemionic, electrophotonic, electrochemionic, photoelectronic, photochemionic, chemiophotonic, and chemioelectronic) can be identified. In this concept article, looking at molecular transformations in an unconventional way, we have tried to give a flavor of some of the new features that project the old science of chemistry towards novel achievements.
机译:任何类型的设备或机器都需要基材,能量和信息信号。如果我们希望以纳米级进行操作,则必须使用分子作为底物。在分子水平上的能量和信号处理取决于所提供的输入与所获得的过程类型之间的因果关系。我们根据输入的性质(电子,光子或化学)和所获得的效应的性质(随后的电子,光子或化学过程)在分子水平上对能量和信号处理进行了分类。通过将三种输入与三种类型的结果过程耦合,可以识别九种基于分子的过程(电子,光子,化学离子,电子光子,电化学,光电,光化学,化学光子和化学电子)。在这篇概念文章中,我们以一种非常规的方式看待分子转化,我们试图给出一些新特征的味道,这些新特征将旧的化学科学推向了新的成就。

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