de Groot Matheus T, Merkx Maarten, Koper Marc T M
Laboratory of Inorganic Chemistry and Catalysis, Schuit Institute of Catalysis, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.
J Am Chem Soc. 2005 Nov 23;127(46):16224-32. doi: 10.1021/ja0546572.
Electrochemical nitric oxide (NO) reduction by heme groups incorporated in films of didodecyldimethylammonium bromide (DDAB) on pyrolitic graphite was investigated. It is shown that DDAB most likely induces the release of the heme group from myoglobin and therefore myoglobin-DDAB and heme-DDAB films give the same voltammetric responses. This is confirmed by UV/vis spectroscopy showing a clear shift in the Soret band of myoglobin in a DDAB solution. The electrochemical NO reduction on a heme-DDAB film at different pH values reveals the presence of pH-dependent and pH-independent NO reduction pathways. The selectivity of these pathways is probed by combining the rotating ring-disk electrode technique with online electrochemical mass spectroscopy showing that the product of the pH-independent pathway is N2O and the product of the pH-dependent pathway is NH2OH. The preference for one or the other pathway seems to depend on whether a proton or a NO molecule is transferred to a Fe(II)-NO- reaction intermediate and is influenced by pH, NO concentration, and potential.
研究了在热解石墨上的十二烷基二甲基溴化铵(DDAB)薄膜中所含血红素基团对一氧化氮(NO)的电化学还原作用。结果表明,DDAB很可能促使血红素基团从肌红蛋白中释放出来,因此肌红蛋白-DDAB薄膜和血红素-DDAB薄膜给出相同的伏安响应。紫外/可见光谱证实了这一点,该光谱显示在DDAB溶液中肌红蛋白的Soret带发生了明显的位移。在不同pH值下,血红素-DDAB薄膜上的电化学NO还原揭示了存在pH依赖性和pH非依赖性的NO还原途径。通过将旋转环盘电极技术与在线电化学质谱联用,探究了这些途径的选择性,结果表明pH非依赖性途径的产物是N2O,pH依赖性途径的产物是NH2OH。对一种或另一种途径的偏好似乎取决于质子还是NO分子转移到Fe(II)-NO-反应中间体,并且受pH、NO浓度和电位的影响。