Department of Chemistry, University of New Brunswick, Fredericton, New Brunswick, E3B 5A3, Canada.
Chemistry. 2021 Jun 10;27(33):8528-8536. doi: 10.1002/chem.202100318. Epub 2021 May 14.
Optimized synthetic procedures for pyridinium ions featuring iminophosphorano (-N=PR ; R=Ph, Cy) π-donor substituents in the 2- and 4- positions are described. Crystallographic and theoretical studies reveal that the strongly donating substituents severely polarize the π-electrons of the pyridyl ring at the expense of aromaticity. Moreover, the pyridinium ions are readily deprotonated to generate powerful bispyridinylidene (BPY) organic electron donors. Electrochemical studies show exceptionally low redox potentials for the two-electron BPY/BPY couples, ranging from -1.71 V vs the saturated calomel electrode for 3PhPh (with four Ph P=N- groups) to -1.85 V for 3CyCy (with four Cy P=N- groups). These new compounds represent the most reducing neutral organic electron donors (OEDs) currently known. Some preliminary reductions involving 3CyCy showed enhanced capability owing to its low redox potential, such as the thermally activated reduction of an aryl chloride, but purification challenges were often encountered.
描述了具有 2-和 4-位亚氨基膦酰基(-N=PR;R=Ph,Cy)π-供体取代基的吡啶鎓离子的优化合成程序。晶体学和理论研究表明,强供电子取代基严重极化吡啶环的π电子,从而损害芳香性。此外,吡啶鎓离子很容易去质子化,生成强双吡啶基(BPY)有机电子给体。电化学研究表明,两个电子 BPY/BPY 对的还原电位非常低,对于具有四个 Ph P=N-基团的 3PhPh,其范围为相对于饱和甘汞电极(SCE)-1.71 V,而对于具有四个 Cy P=N-基团的 3CyCy,则为-1.85 V。这些新化合物代表了目前已知的最还原的中性有机电子给体(OEDs)。一些初步的还原涉及 3CyCy,由于其还原电位较低,显示出增强的能力,例如芳基氯的热活化还原,但经常遇到纯化挑战。