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Single-molecule Mapping of Long-range Electron Transfer for a Cytochrome b562 Variant
- Source :
- Della Pia , E A , Chi , Q , Jones , D D , Macdonald , J E , Ulstrup , J & Elliott , M 2011 , ' Single-molecule Mapping of Long-range Electron Transfer for a Cytochrome b562 Variant ' , Nano Letters , vol. 11 , pp. 176-182 .
- Publication Year :
- 2011
-
Abstract
- Cytochrome b562 was engineered to introduce a cysteine residue at a surface-exposed position to facilitate direct self-assembly on a Au(111) surface. The confined protein exhibited reversible and fast electron exchange with a gold substrate over a distance of 20 Å between the heme redox center and the gold surface, a clear indication that a long-range electron-transfer pathway is established. Electrochemical scanning tunneling microscopy was used to map electron transport features of the protein at the single-molecule level. Tunneling resonance was directly imaged and apparent molecular conductance was measured, which both show strong redox-gated effects. This study has addressed the first case of heme proteins and offered new perspectives in single-molecule bioelectronics.
Details
- Database :
- OAIster
- Journal :
- Della Pia , E A , Chi , Q , Jones , D D , Macdonald , J E , Ulstrup , J & Elliott , M 2011 , ' Single-molecule Mapping of Long-range Electron Transfer for a Cytochrome b562 Variant ' , Nano Letters , vol. 11 , pp. 176-182 .
- Notes :
- English
- Publication Type :
- Electronic Resource
- Accession number :
- edsoai.ocn826388979
- Document Type :
- Electronic Resource