Charles D. Davidson School of Chemical Engineering, Purdue University, West Lafayette, Indiana 47907, USA; email:
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, USA; email:
Annu Rev Chem Biomol Eng. 2018 Jun 7;9:83-103. doi: 10.1146/annurev-chembioeng-060817-083945. Epub 2018 Mar 26.
Although less studied than their closed-shell counterparts, materials containing stable open-shell chemistries have played a key role in many energy storage and energy conversion devices. In particular, the oxidation-reduction (redox) properties of these stable radicals have made them a substantial contributor to the progress of organic batteries. Moreover, the use of radical-based materials in photovoltaic devices and thermoelectric systems has allowed for these emerging molecules to have impacts in the energy conversion realm. Additionally, the unique doublet states of radical-based materials provide access to otherwise inaccessible spin states in optoelectronic devices, offering many new opportunities for efficient usage of energy in light-emitting devices. Here, we review the current state of the art regarding the molecular design, synthesis, and application of stable radicals in these energy-related applications. Finally, we point to fundamental and applied arenas of future promise for these designer open-shell molecules, which have only just begun to be evaluated in full.
尽管稳定开壳化合物的研究不如其闭壳化合物那么多,但在许多储能和能量转换装置中,这些化合物发挥了关键作用。特别是,这些稳定自由基的氧化还原(redox)特性使它们成为有机电池发展的重要贡献者。此外,在光伏器件和热电系统中使用基于自由基的材料,使得这些新兴分子在能量转换领域产生了影响。此外,基于自由基的材料的独特双重态为光电设备中原本无法进入的自旋态提供了通道,为发光设备中能量的有效利用提供了许多新的机会。在这里,我们回顾了在这些能源相关应用中,稳定自由基在分子设计、合成和应用方面的最新进展。最后,我们指出了这些设计开壳分子在未来具有前景的基础和应用领域,这些领域才刚刚开始全面评估。