Negative Differential Conductance in Polyporphyrin Oligomers with Nonlinear Backbones

We study negative differential conductance (NDC) effects in polyporphyrin oligomers with nonlinear backbones. Using a low-temperature scanning tunneling microscope, we selectively controlled the charge transport path in single oligomer wires. We observed robust NDC when charge passed through a T-sha...

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Veröffentlicht in:Journal of the American Chemical Society 2018-01, Vol.140 (2), p.570-573
Hauptverfasser: Kuang, Guowen, Chen, Shi Zhang, Yan, Linghao, Chen, Ke Qiu, Shang, Xuesong, Liu, Pei Nian, Lin, Nian
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Sprache:eng
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Zusammenfassung:We study negative differential conductance (NDC) effects in polyporphyrin oligomers with nonlinear backbones. Using a low-temperature scanning tunneling microscope, we selectively controlled the charge transport path in single oligomer wires. We observed robust NDC when charge passed through a T-shape junction, bistable NDC when charge passed through a 90° kink and no NDC when charge passed through a 120° kink. Aided by density functional theory with nonequilibrium Green’s functions simulations, we attributed this backbone-dependent NDC to bias-modulated hybridization of the electrode states with the resonant transport molecular orbital. We argue this mechanism is generic in molecular systems, which opens a new route of designing molecular NDC devices.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.7b11016