Conformations of cyclopentasilane stereoisomers control molecular junction conductance
Li H, Garner MH, Shangguan Z, Zheng Q, Su TA, Neupane M, Li P, Velian A, Steigerwald ML, Xiao S, Nuckolls C, Solomon GC, Venkataraman L. 2016. Conformations of cyclopentasilane stereoisomers control molecular junction conductance. Chemical Science. 7(9), 5657–5662.
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Journal Article
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Author
Li, Haixing;
Garner, Marc H.;
Shangguan, Zhichun;
Zheng, Qianwen;
Su, Timothy A.;
Neupane, Madhav;
Li, Panpan;
Velian, Alexandra;
Steigerwald, Michael L.;
Xiao, Shengxiong;
Nuckolls, Colin;
Solomon, Gemma C.
All
All
Abstract
Here we examine the impact of ring conformation on the charge transport characteristics of cyclic pentasilane structures bound to gold electrodes in single molecule junctions. We investigate the conductance properties of alkylated cyclopentasilane cis and trans stereoisomers substituted in the 1,3-position with methylthiomethyl electrode binding groups using both the scanning tunneling microscope-based break junction technique and density functional theory based ab initio calculations. In contrast with the linear ones, these cyclic silanes yield lower conductance values; calculations reveal that the constrained dihedral geometries occurring within the ring are suboptimal for σ-orbital delocalization, and therefore, conductance. Theoretical calculations reproduce the measured conductance trends for both cis and trans isomers and find several distinct conformations that are likely to form stable molecular junctions at room temperature. Due to the weakened σ-conjugation in the molecule, through-space interactions are found to contribute significantly to the conductance. This manuscript details the vast conformational flexibility in cyclopentasilanes and the tremendous impact it has on controlling conductance.
Publishing Year
Date Published
2016-05-30
Journal Title
Chemical Science
Publisher
Royal Society of Chemistry
Volume
7
Issue
9
Page
5657-5662
ISSN
eISSN
IST-REx-ID
Cite this
Li H, Garner MH, Shangguan Z, et al. Conformations of cyclopentasilane stereoisomers control molecular junction conductance. Chemical Science. 2016;7(9):5657-5662. doi:10.1039/c6sc01360k
Li, H., Garner, M. H., Shangguan, Z., Zheng, Q., Su, T. A., Neupane, M., … Venkataraman, L. (2016). Conformations of cyclopentasilane stereoisomers control molecular junction conductance. Chemical Science. Royal Society of Chemistry. https://doi.org/10.1039/c6sc01360k
Li, Haixing, Marc H. Garner, Zhichun Shangguan, Qianwen Zheng, Timothy A. Su, Madhav Neupane, Panpan Li, et al. “Conformations of Cyclopentasilane Stereoisomers Control Molecular Junction Conductance.” Chemical Science. Royal Society of Chemistry, 2016. https://doi.org/10.1039/c6sc01360k.
H. Li et al., “Conformations of cyclopentasilane stereoisomers control molecular junction conductance,” Chemical Science, vol. 7, no. 9. Royal Society of Chemistry, pp. 5657–5662, 2016.
Li H, Garner MH, Shangguan Z, Zheng Q, Su TA, Neupane M, Li P, Velian A, Steigerwald ML, Xiao S, Nuckolls C, Solomon GC, Venkataraman L. 2016. Conformations of cyclopentasilane stereoisomers control molecular junction conductance. Chemical Science. 7(9), 5657–5662.
Li, Haixing, et al. “Conformations of Cyclopentasilane Stereoisomers Control Molecular Junction Conductance.” Chemical Science, vol. 7, no. 9, Royal Society of Chemistry, 2016, pp. 5657–62, doi:10.1039/c6sc01360k.