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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Voltammetric and surface-enhanced resonance raman spectroscopic characterization of cytochrome c adsorbed on a 4-mercaptopyridine monolayer on silver electrodes
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Voltammetric and surface-enhanced resonance raman spectroscopic characterization of cytochrome c adsorbed on a 4-mercaptopyridine monolayer on silver electrodes

机译:伏安法和表面增强共振拉曼光谱法表征银电极上4-巯基吡啶单层吸附的细胞色素c

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摘要

To combine voltammetric techniques with surface-enhanced resonance Raman scattering (SERRS), cytochrome c (cyt c) was immobilized on a roughened silver electrode chemically modified with a self-assembled monolayer (SAM) of 4-mercaptopyridine (PySH). All measurements were performed on the same electrode in a homemade spectroelectrochemical cell suitable for such applications. Cyt c on a PySH-SAM shows a quasi-reversible, monoelectronic, adsorption-controlled CV response with a formal reduction potential of -0.061 V (vs SCE), which is comparable to the values found for native cyt c adsorbed on different SAMs. SERRS spectra proved that cyt c adsorbed on a PySH monolayer is present in the native conformer (the B1 state). Voltammetric and SERRS experiments at high ionic strength revealed that the interaction between the SAM and the protein is electrostatic in nature. In conclusion, PySH was found to be suitable for adsorption of cyt c at SERRS-active silver surfaces. In comparison with other SAMs, PySH requires less time (10 min vs 12-18 h) to form a long-time durable and reproducible coating on the roughened electrode surface.
机译:为了将伏安技术与表面增强共振拉曼散射(SERRS)结合使用,将细胞色素c(cyt c)固定在用4-巯基吡啶(PySH)自组装单层(SAM)化学修饰的粗糙银电极上。所有测量均在适用于此类应用的自制光谱电化学池中的同一电极上进行。 PySH-SAM上的Cyt c显示出准可逆的,单电子的,吸附控制的CV响应,其正式还原电位为-0.061 V(vs SCE),与吸附在不同SAM上的天然Cyt c的值相当。 SERRS光谱证明吸附在PySH单层上的cyt c存在于天然构象异构体(B1状态)中。在高离子强度下的伏安法和SERRS实验表明,SAM与蛋白质之间的相互作用本质上是静电的。总之,发现PySH适合在SERRS活性银表面吸附cyt c。与其他SAM相比,PySH需要更少的时间(10分钟vs 12-18小时)在粗糙的电极表面上形成长时间的耐用且可重现的涂层。

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