Publication | Closed Access
Highly Stable Redox-Active Molecular Layers by Covalent Grafting to Conductive Diamond
53
Citations
17
References
2011
Year
EngineeringFunctionalization SchemeChemistryPropylene CarbonateRedox ChemistryHybrid MaterialsMaterials ScienceMolecular ElectrochemistryConductive DiamondSurface ElectrochemistryElectrochemistryDiamond-like CarbonElectronic MaterialsSurface FunctionalizationNanomaterialsSurface ChemistrySurface-tethered RuFunctional MaterialsElectrochemical Surface Science
We demonstrate a modular "click"-based functionalization scheme that allows inexpensive conductive diamond samples to serve as an ultrastable platform for surface-tethered electrochemically active molecules stable out to ∼1.3 V vs Ag/AgCl. We have cycled surface-tethered Ru(tpy)(2) to this potential more than 1 million times with little or no degradation in propylene carbonate and only slightly reduced stability in water and acetonitrile.
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