Variation of the Fermi level and the electrostatic force of a metallic nanoparticle upon colliding with an electrode.
نویسندگان
چکیده
When a metallic nanoparticle (NP) comes in close contact with an electrode, its Fermi level equilibrates with that of the electrode if their separation is less than the cut-off distance for electron tunnelling. In the absence of chemical reactions in solution, the charge on the metallic nanoparticle is constant outside this range before or after the collision. However, the double layer capacitances of both the electrode and the NP are influenced by each other, varying as the function of distance. Because the charge on the nanoparticle is constant, the outer potential of the metallic NP and hence its Fermi level varies as the capacitance changes. This effect is more pronounced for small particles (<10 nm) in diluted supporting electrolyte solutions, especially if the metallic nanoparticle and the electrode have different potentials of zero charge. Nanoparticles were found to be more electrochemically active in the vicinity of the electrode. For example, the outer potential of a positively-polarized 2 nm radius NP was predicted to decrease by 35 mV or 100 mV (depending on the electrostatic model used to describe the electric double layer), when the NP moved from an electrode at 1 V (vs. its pzc) to the bulk. The force between the equilibrated NP and the electrode is always repulsive when they have the same pzc. Otherwise there can be an attraction even when the NP and the electrode carry charges of the same sign, due to the redistibution of surface charge density at both the NP and electrode surface.
منابع مشابه
Variation of the Fermi level and the electrostatic force of a metallic nanoparticle upon colliding with an electrode† †Electronic supplementary information (ESI) available: Finite element model description, justification of model assumptions, schematic descriptions of the Fermi level changes upon NP collision with an electrode, the simulations of double layer capacitance of an electrode calculated with different double layer models, 3D plots corresponding to the contour plots of Fig. 1, the effect on the electrolyte concentration and NP radius on the potential distribution, surface charge density plots on the electrode and NP and their comparison with those calculated analytically in the absence of electrolyte, details of the calculations of the interaction between dissimilar parallel plates, and a further discussion of the approximate analytical expressions for the force between NP and electrode in the presence of electrolyte. See DOI: 10.1039/c7sc00848a Click here for additional data file.
Laboratoire d’Electrochimie Physique et Fédérale de Lausanne (EPFL), Rue de l’In E-mail: pekka.peljo@ep.ch Department of Thermodynamics, Faculty Moliner, 50, E-46100 Burjasot, Spain † Electronic supplementary information description, justication of model assum Fermi level changes upon NP collision double layer capacitance of an electrode models, 3D plots corresponding to the co electrolyte co...
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عنوان ژورنال:
- Chemical science
دوره 8 7 شماره
صفحات -
تاریخ انتشار 2017