New Insights in Nanoelectrodeposition: An Electrochemical Aggregative Growth Mechanism
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-15266-0_10
Reference77 articles.
1. Campelo JM, Luna D, Luque R, Marinas JM, Romero AA (2009) Sustainable preparation of supported metal nanoparticles and their applications in catalysis. ChemSusChem 2(1):18–45
2. Yu W, Porosoff MD, Chen JG (2012) Review of pt-based bimetallic catalysis: from model surfaces to supported catalysts. Chem Rev 112(11):5780–5817
3. Chen AC, Holt-Hindle P (2010) Platinum-based nanostructured materials: synthesis, properties, and applications. Chem Rev 110(6):3767–3804
4. Welch CM, Simm AO, Compton RG (2006) Oxidation of electrodeposited copper on boron doped diamond in acidic solution: manipulating the size of copper nanoparticles using voltammetry. Electroanalysis 18(10):965–970
5. Campbell FW, Compton RG (2010) The use of nanoparticles in electroanalysis: an updated review. Anal Bioanal Chem 396(1):241–259
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