Please use this identifier to cite or link to this item: 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
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