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https://doi.org/10.1039/d0sc04555a
Title: | Room temperature conductance switching in a molecular iron(iii) spin crossover junction | Authors: | Karuppannan, Senthil Kumar Martin-Rodriguez, Alejandro Ruiz, Eliseo Harding, Phimphaka Harding, David J Yu, Xiaojiang Tadich, Anton Cowie, Bruce Qi, Dongchen Nijhuis, Christian A |
Keywords: | Science & Technology Physical Sciences Chemistry, Multidisciplinary Chemistry |
Issue Date: | 21-Feb-2021 | Publisher: | ROYAL SOC CHEMISTRY | Citation: | Karuppannan, Senthil Kumar, Martin-Rodriguez, Alejandro, Ruiz, Eliseo, Harding, Phimphaka, Harding, David J, Yu, Xiaojiang, Tadich, Anton, Cowie, Bruce, Qi, Dongchen, Nijhuis, Christian A (2021-02-21). Room temperature conductance switching in a molecular iron(iii) spin crossover junction. CHEMICAL SCIENCE 12 (7). ScholarBank@NUS Repository. https://doi.org/10.1039/d0sc04555a | Abstract: | Herein, we report the first room temperature switchable Fe(iii) molecular spin crossover (SCO) tunnel junction. The junction is constructed from [FeIII(qsal-I)2]NTf2(qsal-I = 4-iodo-2-[(8-quinolylimino)methyl]phenolate) molecules self-assembled on graphene surfaces with conductance switching of one order of magnitude associated with the high and low spin states of the SCO complex. Normalized conductance analysis of the current-voltage characteristics as a function of temperature reveals that charge transport across the SCO molecule is dominated by coherent tunnelling. Temperature-dependent X-ray absorption spectroscopy and density functional theory confirm the SCO complex retains its SCO functionality on the surface implying that van der Waals molecule—electrode interfaces provide a good trade-off between junction stability while retaining SCO switching capability. These results provide new insights and may aid in the design of other types of molecular devices based on SCO compounds. | Source Title: | CHEMICAL SCIENCE | URI: | https://scholarbank.nus.edu.sg/handle/10635/200711 | ISSN: | 20416520 20416539 |
DOI: | 10.1039/d0sc04555a |
Appears in Collections: | Staff Publications Elements |
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