Scinovex
articleTop 1% cited

Characterization of Polydopamine Thin Films Deposited at Short Times by Autoxidation of Dopamine

Langmuir · 2013 · Vol. 29(27) · pp. 8619–8628
Rebecca A. ZangmeisterTim MorrisMichael J. Tarlov

Abstract

Current interest in melanin films derived from the autoxidation of dopamine stems from their use as a universal adhesion layer. Here we report chemical and physical characterization of polydopamine films deposited on gold surfaces from stirred basic solutions at times ranging from 2 to 60 min, with a focus on times ≤10 min. Data from Fourier transform infrared (FTIR), X-ray photoelectron spectroscopy (XPS), and electrochemical methods suggest the presence of starting (dopamine) and intermediate (C=N-containing tautomers of quinone and indole) species in the polydopamine films at all deposition times. A uniform overlayer analysis of the XPS data indicates that film thickness increased linearly at short deposition times of ≤10 min. At deposition times ≥10 min, the films appeared largely continuous with surface roughness ≈ ≤ 2 nm, as determined by atomic force microscopy (AFM). Pinhole-free films, as determined by anionic redox probe measurements, required deposition times of 60 min or greater.

Polymer Surface Interaction StudiesConducting polymers and applicationsMolecular Junctions and NanostructuresX-ray photoelectron spectroscopyAutoxidationOverlayerFourier transform infrared spectroscopyChemistryThin filmAnalytical Chemistry (journal)Deposition (geology)MonolayerChemical engineering

MeSH terms

DopamineGoldIndolesOxidation-ReductionPolymersSpectrophotometrySurface PropertiesTime FactorsX-RaysMolecular StructureSpectroscopy, Fourier Transform InfraredMicroscopy, Atomic ForceElectrochemical Techniques

Funding

  • National Institute of Standards and Technology
Citations
946
FWCI
22.14
field-weighted impact
References
50
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.