Warczak Magdalena, Gryszel Maciej, Jakešová Marie, Đerek Vedran, Głowacki Eric Daniel
Laboratory of Organic Electronics, ITN Campus Norrköping, Linköpings Universitet, Bredgatan 34, 60221, Norrköping, Sweden.
Chem Commun (Camb). 2018 Feb 20;54(16):1960-1963. doi: 10.1039/c7cc08471d.
Hydrogen peroxide is one of the most important industrial chemicals and there is great demand for the production of HO using more sustainable and environmentally benign methods. We show electrochemical production of HO by the reduction of O, enabled by an organic semiconductor catalyst, N,N'-dimethyl perylenetetracarboxylic diimide (PTCDI). We make PTCDI cathodes that are capable of stable and reusable operation in aqueous electrolytes in a pH range of 1-13 with a catalytic figure of merit as high as 26 g H(2)O(2) per g catalyst per h. [corrected] These performance and stability open new avenues for organic small molecule semiconductors as electrocatalysts.
过氧化氢是最重要的工业化学品之一,人们对采用更可持续且环境友好的方法生产过氧化氢有着巨大需求。我们展示了通过有机半导体催化剂N,N'-二甲基苝四羧酸二酰亚胺(PTCDI)实现氧气还原从而电化学生产过氧化氢的过程。我们制备了PTCDI阴极,该阴极能够在pH值为1至13的水性电解质中稳定且可重复使用地运行,催化品质因数高达每克催化剂每小时26克过氧化氢。[已修正]这些性能和稳定性为有机小分子半导体作为电催化剂开辟了新途径。