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Nucleation aggregative growth and detachment of metal nanoparticles during electrodeposition at electrode surfaces

机译:电极表面电沉积过程中金属纳米颗粒的形核聚集生长和脱离

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摘要

The nucleation and growth of metal nanoparticles (NPs) on surfaces is of considerable interest with regard to creating functional interfaces with myriad applications. Yet, key features of these processes remain elusive and are undergoing revision. Here, the mechanism of the electrodeposition of silver on basal plane highly oriented pyrolytic graphite (HOPG) is investigated as a model system at a wide range of length scales, spanning electrochemical measurements from the macroscale to the nanoscale using scanning electrochemical cell microscopy (SECCM), a pipette-based approach. The macroscale measurements show that the nucleation process cannot be modelled as either truly instantaneous or progressive, and that step edge sites of HOPG do not play a dominant role in nucleation events compared to the HOPG basal plane, as has been widely proposed. Moreover, nucleation numbers extracted from electrochemical analysis do not match those determined by atomic force microscopy (AFM). The high time and spatial resolution of the nanoscale pipette set-up reveals individual nucleation and growth events at the graphite basal surface that are resolved and analysed in detail. Based on these results, corroborated with complementary microscopy measurements, we propose that a nucleation-aggregative growth-detachment mechanism is an important feature of the electrodeposition of silver NPs on HOPG. These findings have major implications for NP electrodeposition and for understanding electrochemical processes at graphitic materials generally.
机译:关于创建具有多种应用的功能界面,金属纳米粒子(NPs)在表面上的成核和生长引起了极大的兴趣。但是,这些过程的关键功能仍然难以捉摸,并且正在修订中。在此,作为模型系统,在广泛的长度范围内研究了银在基面高度取向的热解石墨(HOPG)上的电沉积机理,涵盖了使用扫描电化学电池显微镜(SECCM)从宏观到纳米尺度的电化学测量,是基于移液器的方法。宏观测量结果表明,成核过程无法建模为真正的瞬时或渐进过程,与HOPG基础平面相比,HOPG的台阶边缘位点在成核事件中不发挥主导作用。此外,从电化学分析中提取的成核数与通过原子力显微镜(AFM)确定的成核数不匹配。纳米级移液器装置的高时间和空间分辨率揭示了石墨基底表面的单个成核和生长事件,这些事件已得到详细解析和分析。根据这些结果,并辅以互补的显微镜测量结果,我们提出成核-聚集生长-脱离机理是HONP上电沉积银纳米颗粒的重要特征。这些发现对于NP电沉积和一般理解石墨材料的电化学过程具有重要意义。

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