Tel-Vered Ran, Bard Allen J
Department of Chemistry and Biochemistry and the Center for Nano and Molecular Science and Technology, The University of Texas at Austin, Austin, Texas 78712, USA.
J Phys Chem B. 2006 Dec 21;110(50):25279-87. doi: 10.1021/jp064434d.
Different pathways towards the generation and detection of a single metal nanoparticle (MNP) on a conductive carbon support for testing as an electrocatalyst are described. Various approaches were investigated including interparticle distance enhancement, electrochemical and mechanical tip-substrate MNP transfer onto macroscopic surfaces, scanning electrochemical microscopy (SECM)-controlled electrodeposition, and the use of selective binding monolayers on carbon fiber electrodes (CFEs) for solution-phase-selective adsorption. A novel SECM technique for electrodepositing MNPs on CFE tips immersed 100-200 nm below the electrolyte level was developed and used to generate single Pt and Ni nanoparticles. Following their generation, we demonstrate electrocatalytic detection of Fe3+ on individual Pt particles with the CFE in a Fe3+/H2SO4 solution. We also describe an approach of attaching MNPs to CFEs by controlling the composition of monolayers bonded to the CFE. By employing a monolayer with a low ratio of binding (e.g., 4-aminopyridine) to nonbinding molecules (e.g., aniline) and controlling the position of the CFE in a colloidal Pt solution with a SECM, we attached a single 15 nm radius Pt nanoparticle to the CFE. Such chemisorbed Pt particles exhibited a stronger adhesion on surface-modified CFEs and better mechanical stability during proton reduction than MNPs electrodeposited directly on the CFE.
本文描述了在导电碳载体上生成和检测单个金属纳米颗粒(MNP)以用作电催化剂测试的不同途径。研究了各种方法,包括增强颗粒间距离、将电化学和机械尖端 - 基底的MNP转移到宏观表面、扫描电化学显微镜(SECM)控制的电沉积,以及在碳纤维电极(CFE)上使用选择性结合单层进行溶液相选择性吸附。开发了一种新颖的SECM技术,用于在浸入电解液液面以下100 - 200 nm的CFE尖端上电沉积MNP,并用于生成单个Pt和Ni纳米颗粒。在生成这些颗粒之后,我们展示了在Fe3+/H2SO4溶液中使用CFE对单个Pt颗粒上的Fe3+进行电催化检测。我们还描述了一种通过控制与CFE结合的单层的组成将MNP附着到CFE上的方法。通过使用具有低结合(例如4 - 氨基吡啶)与非结合分子(例如苯胺)比例的单层,并利用SECM控制CFE在胶体Pt溶液中的位置,我们将单个半径为15 nm的Pt纳米颗粒附着到了CFE上。与直接电沉积在CFE上的MNP相比,这种化学吸附的Pt颗粒在表面改性的CFE上表现出更强的附着力,并且在质子还原过程中具有更好的机械稳定性。