Unidirectional Real-Time Photoswitching of Diarylethene Molecular Monolayer Junctions with Multilayer Graphene Electrodes
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We fabricate and characterize vertical molecular junctions consisting of self-assembled monolayers (SAMs) of diarylethene (DAE) contacted by a multilayer graphene (MLG) electrode on the top and gold on the bottom. The DAE molecular junctions show two stable electrical states, a closed state (high conductance) or an open state (low conductance), which are created upon illumination with UV or visible light, respectively. For the Au-DAE-MLG junction structure, we observe that the current levels between the two conductance states are separated by two orders of magnitude. However, in a real-time measurement, we observe only unidirectional switching behavior from the open to the closed state.
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KOO, Jeongmin, Yeonsik JANG, León MARTIN, Dongku KIM, Hyunhak JEONG, Elke SCHEER, Mikhail KABDULOV, Thomas HUHN, Fabian PAULY, Takhee LEE, 2019. Unidirectional Real-Time Photoswitching of Diarylethene Molecular Monolayer Junctions with Multilayer Graphene Electrodes. In: ACS applied materials & interfaces. 2019, 11(12), pp. 11645-11653. ISSN 1944-8244. eISSN 1944-8252. Available under: doi: 10.1021/acsami.8b19372BibTex
@article{Koo2019-03-27Unidi-45546, year={2019}, doi={10.1021/acsami.8b19372}, title={Unidirectional Real-Time Photoswitching of Diarylethene Molecular Monolayer Junctions with Multilayer Graphene Electrodes}, number={12}, volume={11}, issn={1944-8244}, journal={ACS applied materials & interfaces}, pages={11645--11653}, author={Koo, Jeongmin and Jang, Yeonsik and Martin, León and Kim, Dongku and Jeong, Hyunhak and Scheer, Elke and Kabdulov, Mikhail and Huhn, Thomas and Pauly, Fabian and Lee, Takhee} }
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