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Correlated Optical–Electrochemical Measurements Reveal Bidirectional Current Steps for Graphene Nanoplatelet Collisions at Ultramicroelectrodes

机译:相关光学电化学测量显示超微电极的石墨烯纳米片碰撞的双向电流步骤

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Single-entity electrochemistry has emerged as a powerful tool to study the adsorption behavior of single nanoscale entities one-at-a-time on an ultramicroelectrode surface. Classical single-entity collision studies have focused on the behavior of spherical nanoparticles or entities where the orientation of the colliding entity does not impact the electrochemical response. Here, we report a detailed study of the collision of asymmetric single graphene nanoplatelets onto ultramicroelectrodes. The collision of conductive graphene nanoplatelets on biased ultramicroelectrode surfaces can be observed in an amperometric i –t trace, revealing a variety of current transients (both positive and negative steps). To elucidate the dynamics of nanoplatelet adsorption processes and probe response heterogeneity, we correlated the collision events with optical microscopy. We show that positive steps are due to nanoplatelets coming into contact with the ultramicroelectrode, making an electrical connection, and adsorbing partly on the glass surrounding the ultramicroelectrode. Negative steps occur when nanoplatelets adsorb onto the glass without an electrical connection, effectively blocking flux of ferrocenemethanol to the ultramicroelectrode surface. These measurements allow rigorous quantification of current transients and detailed insights into the adsorption dynamics of asymmetric objects at the nanoscale.
机译:单体电化学已成为研究单个纳米级实体在超微电极表面一次吸附行为的有力工具。经典的单实体碰撞研究集中于球形纳米颗粒或实体的行为,其中碰撞实体的方向不会影响电化学响应。在这里,我们详细研究了不对称单石墨烯纳米片与超微电极的碰撞。导电石墨烯纳米片在偏置超微电极表面上的碰撞可以在电流i–t轨迹中观察到,揭示了各种电流瞬变(正阶和负阶)。为了阐明纳米血小板吸附过程的动力学和探针响应的异质性,我们将碰撞事件与光学显微镜相关联。我们发现,积极的步骤是由于纳米血小板与超微电极接触,形成电连接,并部分吸附在超微电极周围的玻璃上。当纳米片在没有电连接的情况下吸附到玻璃上时,会出现负步骤,有效地阻止二茂铁甲醇进入超微电极表面。这些测量允许对电流瞬变进行严格量化,并详细了解纳米尺度上不对称物体的吸附动力学。

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