García-Jareño José Juan, Agrisuelas Jerónimo, Vargas Zoe, Vicente Francisco
Departament Química-Física, Universitat de València, Dr. Moliner 50, 46100 Burjassot, Spain.
Molecules. 2024 Aug 7;29(16):3752. doi: 10.3390/molecules29163752.
Methylene blue was electropolymerized on the surface of stainless steel 316. The addition of sodium oxalate and working at a pH near 11 allowed us to obtain steel electrodes coated with an electroactive polymer. This polymer shows electrochromic properties like those of the monomer, but also exhibits electroactivity at more positive potentials, which is associated with the active centers in the bridges between monomeric units. A digital video electrochemistry study allowed us to simultaneously quantify, on the one hand, the color changes on the entire surface of the stainless steel and on the other to separate the contribution of the active centers of the phenothiazine ring and of the inter-monomer bonds to the overall polymer response by means of assessing the mean color intensities. A reduction mechanism for the polymer, compatible with the pH variation of the observed electrochemical behavior, was proposed.
亚甲基蓝在316不锈钢表面进行电聚合。加入草酸钠并在接近11的pH值下工作,使我们能够获得涂覆有电活性聚合物的钢电极。这种聚合物表现出与单体类似的电致变色特性,但在更正的电位下也表现出电活性,这与单体单元之间桥连中的活性中心有关。数字视频电化学研究使我们一方面能够同时量化不锈钢整个表面的颜色变化,另一方面通过评估平均颜色强度来分离吩噻嗪环的活性中心和单体间键对整体聚合物响应的贡献。提出了一种与观察到的电化学行为的pH变化相兼容的聚合物还原机制。