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Synthesis and optical and electronic properties of core-modified 21,23-dithiaporphyrins

机译:核心修饰的21,23-二硫杂卟啉的合成及其光电性能

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Core-modified 21,23-dithiaporphyrins, meso-substituted with both electron-withdrawing 4-phenylcarboxylic acids and related butyl esters, and electron-donating phenyldodecyl ethers were synthesized. The porphyrins displayed broad absorbance profiles that spanned from 400 to 800 nm with molar absorptivities ranging from 2500 to 200000 M~(-1) cm~(-1). Electrochemical experiments showed the dithiaporphyrins undergo two consecutive, one-electron, quasi-reversible oxidations and reductions at -1.78, -1.43, 0.63, and 0.91 V versus a ferrocene/ferrocenium internal standard. Spectroelectrochemistry and cyclic voltammetry revealed the dithiaporphyrins are stable and can endure many cycles of oxidation and reduction without signs of decomposition. The electronics of the two dithiaporphyrins were similar, and DFT calculations showed the HOMO-LUMO energy difference was smaller than tetrapyrrolic porphyrin analogues. Overall, the combination of desirable electronics, namely: quasi-reversible oxidations and reductions as well as broad absorbance profiles, combined with stability, imply that these core-modified 21,23-dithiaporphyirns could be potentially used as an ambipolar material for organic electronic applications.
机译:合成了被吸电子的4-苯基羧酸和相关的丁酯均经内消旋取代的核修饰的21,23-二硫杂卟啉和给电子的苯基十二烷基醚。卟啉显示出宽的吸收曲线,其吸收范围从400nm到800nm,摩尔吸收率在2500到200000M〜(-1)cm〜(-1)。电化学实验表明,相对于二茂铁/二茂铁内标,二硫杂卟啉在-1.78,-1.43、0.63和0.91 V时经历了两个连续的单电子准可逆氧化和还原。光谱电化学和循环伏安法表明,二硫杂卟啉是稳定的,可以承受许多氧化和还原循环而没有分解迹象。两种二硫杂卟啉的电子学相似,并且DFT计算显示HOMO-LUMO能量差小于四吡咯卟啉类似物。总的来说,理想的电子学的组合,即:准可逆的氧化和还原以及宽广的吸收曲线,再加上稳定性,意味着这些核心修饰的21,23-二硫杂卟啉有可能被用作有机电子应用中的双极性材料。 。

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