Imabayashi Shin-ichiro, Mita Takahiro, Kakiuchi Takashi
Department of Chemistry and Biotechnology, Faculty of Engineering, Yokohama National University, Yokohama 240-8501, Japan.
Langmuir. 2005 Feb 15;21(4):1470-4. doi: 10.1021/la047992x.
The electrochemical properties of cytochrome c (cyt c) adsorbed on mixed self-assembled monolayers (SAMs) of 2-mercaptoethanesulfonate (MES)/2-mercaptoethanol (MEL) are compared with those on single-component SAMs of MES, MEL, and mercaptopropionic acid (MPA), using cyclic voltammetry and potential-modulated UV-vis reflectance spectroscopy. The rate constant of electron transfer (ET), k(et), of cyt c adsorbed on the SAM of MPA decreases from 1450 +/- 210 s(-1) at pH 7 to 890 +/- 100 s(-1) at pH 9. In contrast, the value of k(et) of cyt c on the SAM of MES is pH-independent at 100 +/- 15 s(-1). Those facts suggest that a large negative charge density on the SAM surface slows down the ET between cyt c and the electrode. The surface charge density of the SAM affects also the amount of electroactive cyt c, Gamma(e), which decreases from 10.0 +/- 1.0 to 5.3 +/- 1.1 pmol cm(-2) with increasing pH from 7 to 9 on the SAM of MPA. Similarly, the k(et) of cyt c adsorbed on the mixed SAMs of MES/MEL sharply decreases from 900 +/- 300 s(-1) to 110 s(-1) as the surface mole fraction of MES increases beyond 0.5, suggesting the presence of a negative surface charge threshold beyond which the rate of ET of cyt c is dramatically lowered. The decrease in the k(et) on the SAMs at high negative charge densities probably results from the confinement of adsorbed cyt c by the strong electrostatic force to an orientation that is not optimal for the ET reaction.
利用循环伏安法和电位调制紫外可见反射光谱,比较了细胞色素c(cyt c)吸附在2-巯基乙烷磺酸盐(MES)/2-巯基乙醇(MEL)混合自组装单分子层(SAMs)上与吸附在MES、MEL和巯基丙酸(MPA)单一组分SAMs上的电化学性质。吸附在MPA的SAM上的cyt c的电子转移速率常数k(et)在pH 7时为1450±210 s(-1),在pH 9时降至890±100 s(-1)。相比之下,cyt c在MES的SAM上的k(et)值在100±15 s(-1)时与pH无关。这些事实表明,SAM表面的大负电荷密度减缓了cyt c与电极之间的电子转移。SAM的表面电荷密度也影响电活性cyt c的量Gamma(e),在MPA的SAM上,随着pH从7增加到9,Gamma(e)从10.0±1.0降至5.3±1.1 pmol cm(-2)。同样,随着MES的表面摩尔分数增加超过0.5,吸附在MES/MEL混合SAMs上的cyt c的k(et)从900±300 s(-1)急剧降至110 s(-1),这表明存在一个负表面电荷阈值,超过该阈值,cyt c的电子转移速率会显著降低。在高负电荷密度下SAM上k(et)的降低可能是由于吸附的cyt c被强静电力限制在对电子转移反应不是最佳的取向。