2012
DOI: 10.1021/ar300169d
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Single-Molecule Electrochemistry: Present Status and Outlook

Abstract: The development of methods for detecting and manipulating matter at the level of individual macromolecules represents one of the key scientific advancements of recent decades. These techniques allow us to get information that is largely unobtainable otherwise, such as the magnitudes of microscopic forces, mechanistic details of catalytic processes, macromolecular population heterogeneities, and time-resolved, step-by-step observation of complex kinetics. Methods based on optical, mechanical, and ionic-conducta… Show more

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Cited by 117 publications
(130 citation statements)
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References 52 publications
(124 reference statements)
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“…Schull and colleagues have previously reported studies of self-assembled films of the platinum complexes trans-Pt (CuCC 6 H 4 SAc) 2 L 2 (L = PCy 3 , PBu 3 , PPh 3 , P(OEt) 3 , P(OPh) 3 ) within crossed-wire molecular junctions. 47 Despite the modest (0.08 eV) variation in the HOMO-LUMO gap as a function of the supporting ligand, L, the I-V characteristics of these filmbased junctions were also identical within experimental error.…”
Section: Resultsmentioning
confidence: 99%
“…Schull and colleagues have previously reported studies of self-assembled films of the platinum complexes trans-Pt (CuCC 6 H 4 SAc) 2 L 2 (L = PCy 3 , PBu 3 , PPh 3 , P(OEt) 3 , P(OPh) 3 ) within crossed-wire molecular junctions. 47 Despite the modest (0.08 eV) variation in the HOMO-LUMO gap as a function of the supporting ligand, L, the I-V characteristics of these filmbased junctions were also identical within experimental error.…”
Section: Resultsmentioning
confidence: 99%
“…The application of these nanoelectrodes is by no mean limited to biological measurements and we envision their application in the emerging field of nanoscale interfacial science. 51,52 …”
Section: Discussionmentioning
confidence: 99%
“…For example, single molecules were successfully detected using a redox cycling-based nanofluidic device. 84,85 As described in another review, 42 chip devices will be utilized in organ-on-a-chip systems, which mimic organs in microfluidics. 86 Several materials, such as hydrogels and flexible polymers, have been proposed for device fabrication in these applications.…”
Section: Summary and Future Directionsmentioning
confidence: 99%