首页> 外文会议>General Discussion on Electroanalysis at the Nanoscale >Mapping fluxes of radicals from the combination of electrochemical activation and optical microscopy
【24h】

Mapping fluxes of radicals from the combination of electrochemical activation and optical microscopy

机译:从电化学激活和光学显微镜的组合映射自由基的助熔剂

获取原文

摘要

The coating of gold (Au) electrode surfaces with nitrophenyl (NP) layers is studied by combination of electrochemical actuation and optical detection. The electrochemical actuation of the reduction of the nitrobenzenediazonium (NBD) precursor is used to generate NP radicals and therefore initiate the electrografting. The electrografting process is followed in situ and in real time by light reflectivity microscopy imaging, allowing for spatio-temporal imaging with sub-micrometer lateral resolution and sub-nanometer thickness sensitivity of the local growth of a transparent organic coating onto a reflecting Au electrode. The interest of the electrochemical actuation resides in its ability to finely control the grafting rate of the NP layer through the electrode potential. Coupling the electrochemical actuation with microscopic imaging of the electrode surface allows quantitative estimates of the local grafting rates and subsequently a real time and in situ mapping of the reacting fluxes of NP radicals on the surface. Over the 2 orders of magnitude range of grafting rates (from 0.04 to 4 nm s~(-1)), it is demonstrated that the edge of Au electrodes are grafted ~1.3 times more quickly than their centre, illustrating the manifestation of edge-effects on flux distribution at an electrode. A model is proposed to explain the observed edge-effect, it relies on the short lifetime of the intermediate NP radical species.
机译:通过电化学致动和光学检测的组合研究了具有硝基苯基(NP)层的金(Au)电极表面的涂层。硝基苯齐氮(NBD)前体的还原的电化学致动用于产生NP自由基,因此引发电解。该电接枝工艺之后原位并且在由光反射显微成像实时,允许与亚微米的横向分辨率和透明的有机涂层的局部生长的亚纳米厚度敏感度到反射金电极时空成像。电化学致动的兴趣在于其通过电极电位整体地控制NP层的接枝速率。将电化学致动与电极表面的微观成像耦合允许局部接枝率的定量估计,随后是实时的NP自由基在表面上的反应通量的实时和原位映射。超过2个幅度接枝率(0.04至4nm S〜(-1)),证明Au电极的边缘比其中心快速接枝〜1.3倍,说明了边缘的表现对电极通量分布的影响。提出了一种模型来解释观察到的边缘效应,它依赖于中间NP自由基物种的短寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号