Panizza Marco, Michaud Pierre-Alain, Iniesta Jesus, Comninellis Christos, Cerisola Giacomo
Dipartimento di Ingegneria Chimica e di Processo, Università di Genova, P.le JF Kennedy 1, 16129 Genova.
Ann Chim. 2002 Oct;92(10):995-1006.
The electrochemical behaviour of a synthetic boron-doped diamond thin film electrode (BDD) has been studied in acid media containing phenol using cyclic voltammetry and bulk electrolysis. The results have shown that in the potential region of water stability direct electron transfers can occur on BDD surface resulting in electrode fouling due to the formation of a polymeric film on its surface. During electrolysis in the potential region of oxygen evolution, complex oxidation reactions can take place due to electrogenerated hydroxyl radicals. Electrode fouling is inhibited under these conditions. Depending on the experimental conditions, the electrogenerated hydroxyl radicals can lead to the combustion of phenol or to the selective oxidation of phenol to benzoquinone. The experimental results have also been compared to a theoretical model that permits the prediction of the evolution with time of phenol concentration, during its combustion, or during its selective oxidation to benzoquinone.
采用循环伏安法和本体电解法,研究了合成的硼掺杂金刚石薄膜电极(BDD)在含苯酚的酸性介质中的电化学行为。结果表明,在水稳定的电位区域,BDD表面会发生直接电子转移,由于其表面形成聚合物膜而导致电极污染。在析氧电位区域进行电解时,由于电生成的羟基自由基会发生复杂的氧化反应。在这些条件下,电极污染受到抑制。根据实验条件,电生成的羟基自由基可导致苯酚燃烧或使苯酚选择性氧化为苯醌。实验结果还与一个理论模型进行了比较,该模型可预测苯酚燃烧或选择性氧化为苯醌过程中苯酚浓度随时间的变化。