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- W1986279765 abstract "Myoglobin single-electron transistors were investigated using nanometer- gap platinum electrodes fabricated by electromigration at cryogenic temperatures. Apomyoglobin (myoglobin without heme group) was used as a reference. The results suggest single electron transport is mediated by resonant tunneling with the electronic and vibrational levels of the heme group in a single protein. They also represent a proof-of-principle that proteins with redox centers across nanometer-gap electrodes can be utilized to fabricate single-electron transistors. The protein orientation and conformation may significantly affect the conductance of these devices. Future improvements in device reproducibility and yield will require control of these factors." @default.
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- W1986279765 date "2012-09-12" @default.
- W1986279765 modified "2023-10-18" @default.
- W1986279765 title "An investigation into the feasibility of myoglobin-based single-electron transistors" @default.
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- W1986279765 doi "https://doi.org/10.1088/0957-4484/23/39/395705" @default.
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