Flores-Leonar Martha M, Acosta-Tejada Gloria, Laguna Humberto G, Amador-Bedolla Carlos, Sánchez-Castellanos Mariano, Ugalde-Saldívar Víctor M
Departamento de Física y Química Teórica, Facultad de Química, Universidad Nacional Autónoma de México, CDMX 04510, México.
Departamento de Química Inorgánica, Facultad de Química, Universidad Nacional Autónoma de México, CDMX 04510, México.
ACS Omega. 2023 Aug 31;8(36):32432-32443. doi: 10.1021/acsomega.3c02297. eCollection 2023 Sep 12.
This paper presents a theoretical and experimental evaluation of benzidine derivatives as electroactive molecules for organic redox flow batteries. These redox indicators are novel electroactive materials that can perform multielectron transfers in aqueous media. We performed the synthesis, electrochemical characterization, and theoretical study of the dimer of sodium 4-diphenylamine sulfonate, a benzidine derivative with high water solubility properties. The Pourbaix diagram of the dimer shows a bielectronic process at highly acidic pH values (≤ 0.9) and two single-electron transfers in a pH range from 0 to 9. The dimer was prepared and tested on a neutral electrochemical flow cell as a stability diagnostic. To improve cell performance, we calculate and calibrate, with experimental data, the Pourbaix diagrams of benzidine derivatives using different substitution patterns and functional groups. A screening process allowed the selection of those derivatives with a bielectronic process in the entire pH window or at acidic/neutral pH values. Given the redox potential difference, they can be potential catholytes or anolytes in a flow cell. The couples formed with the final candidates can generate a theoretical cell voltage of 0.60 V at pH 0 and up to 0.68 V at pH 7. These candidate molecules could be viable as electroactive materials for a full-organic redox flow battery.
本文介绍了联苯胺衍生物作为有机氧化还原液流电池电活性分子的理论和实验评估。这些氧化还原指示剂是新型电活性材料,可在水性介质中进行多电子转移。我们对4-二苯胺磺酸钠二聚体进行了合成、电化学表征和理论研究,该二聚体是一种具有高水溶性的联苯胺衍生物。二聚体的Pourbaix图显示在高酸性pH值(≤0.9)下有双电子过程,在pH值为0至9的范围内有两个单电子转移。制备了该二聚体并在中性电化学流动池中进行测试以进行稳定性诊断。为了提高电池性能,我们利用实验数据计算并校准了具有不同取代模式和官能团的联苯胺衍生物的Pourbaix图。通过筛选过程,选择了那些在整个pH窗口或酸性/中性pH值下具有双电子过程的衍生物。考虑到氧化还原电位差,它们可以是流动池中潜在的阴极电解液或阳极电解液。与最终候选物形成的电对在pH值为0时可产生理论电池电压0.60 V,在pH值为7时高达0.68 V。这些候选分子作为全有机氧化还原液流电池的电活性材料可能是可行的。