氧化还原
电致变色
菲咯啉
化学
电子转移
电化学
光化学
联吡啶
半反应
卡宾
价(化学)
循环伏安法
电子传输链
组合化学
无机化学
有机化学
电极
物理化学
催化作用
晶体结构
生物化学
作者
Patrick W. Antoni,Christopher Golz,Max M. Hansmann
标识
DOI:10.1002/anie.202203064
摘要
Novel organic redox systems that display multistage redox behaviour are highly sought-after for a series of applications such as organic batteries or electrochromic materials. Here we describe a simple strategy to transfer well-known two-electron redox active bipyridine and phenanthroline architectures into novel strongly reducing four-electron redox systems featuring fully reversible redox events with up to five stable oxidation states. We give spectroscopic and structural insight into the changes involved in the redox-events and present characterization data on all isolated oxidation states. The redox-systems feature strong UV/Vis/NIR polyelectrochromic properties such as distinct strong NIR absorptions in the mixed valence states. Two-electron charge-discharge cycling studies indicate high electrochemical stability at strongly negative potentials, rendering the new redox architectures promising lead structures for multi-electron anolyte materials.
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