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Supramolecular electron transfer-based switching involving pyrrolic macrocycles. A new approach to sensor development?

机译:基于超分子电子转移的转换涉及吡咯大环化合物。传感器开发的新方法?

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摘要

This Feature focuses on pyrrolic macrocycles that can serve as switches via energy- or electron transfer (ET) mechanisms. Macrocycles operating by both ground state (thermodynamic) and photoinduced ET pathways are reviewed and their ability to serve as the readout motif for molecular sensors is discussed. The aim of this article is to highlight the potential utility of ET in the design of systems that perform molecular switching or logic functions and their applicability in chemical sensor development. The conceptual benefits of this paradigm are illustrated with examples drawn mostly from the authors' laboratories
机译:此功能着重于可通过能量或电子转移(ET)机制充当开关的吡咯大环。审查了大环以基态(热力学)和光诱导的ET途径运行,并讨论了其作为分子传感器的读出基序的能力。本文的目的是强调ET在执行执行分子切换或逻辑功能的系统的设计中的潜在效用及其在化学传感器开发中的适用性。通过从作者实验室中提取的示例说明了该范例的概念上的好处

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