The chirality-induced spin selectivity (CISS) effect allows thin-film layers of chiral conjugated molecules to function as spin filters at ambient temperature. Through solvent-modulated dropcasting of chiral l- and d-perylene diimide (PDI) monomeric building blocks, two types of aggregate morphologies, nanofibers and nanodonuts, may be realized. Spin-diode behavior is evidenced in the nanodonut structures. Stacked PDI units, which form the conjugated core of these nanostructures, dominate the nanodonut-Au electrode contact; in contrast, the AFM tip contacts largely the high-resistance solubilizing alkyl chains of the chiral monomers that form these nanodonuts. Current-voltage responses of the nanodonuts, measured by magnetic conductive AFM (mC-AFM), demonstrate substantial spin polarizations as well as spin current rectification ratios (>10) that exceed the magnitudes of those determined to date for other chiral nanoscale systems. These results underscore the potential for chiral nanostructures, featuring asymmetric molecular junctions, to enable CISS-based nanoscale spin current rectifiers.

Electron Spin Polarization and Rectification Driven by Chiral Perylene Diimide-Based Nanodonuts / Ko, C. -H.; Zhu, Q.; Bullard, G.; Tassinari, F.; Morisue, M.; Naaman, R.; Therien, M. J.. - In: THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS. - ISSN 1948-7185. - 14:45(2023), pp. 10271-10277. [10.1021/acs.jpclett.3c02722]

Electron Spin Polarization and Rectification Driven by Chiral Perylene Diimide-Based Nanodonuts

Tassinari F.;Naaman R.
;
2023

Abstract

The chirality-induced spin selectivity (CISS) effect allows thin-film layers of chiral conjugated molecules to function as spin filters at ambient temperature. Through solvent-modulated dropcasting of chiral l- and d-perylene diimide (PDI) monomeric building blocks, two types of aggregate morphologies, nanofibers and nanodonuts, may be realized. Spin-diode behavior is evidenced in the nanodonut structures. Stacked PDI units, which form the conjugated core of these nanostructures, dominate the nanodonut-Au electrode contact; in contrast, the AFM tip contacts largely the high-resistance solubilizing alkyl chains of the chiral monomers that form these nanodonuts. Current-voltage responses of the nanodonuts, measured by magnetic conductive AFM (mC-AFM), demonstrate substantial spin polarizations as well as spin current rectification ratios (>10) that exceed the magnitudes of those determined to date for other chiral nanoscale systems. These results underscore the potential for chiral nanostructures, featuring asymmetric molecular junctions, to enable CISS-based nanoscale spin current rectifiers.
2023
14
45
10271
10277
Electron Spin Polarization and Rectification Driven by Chiral Perylene Diimide-Based Nanodonuts / Ko, C. -H.; Zhu, Q.; Bullard, G.; Tassinari, F.; Morisue, M.; Naaman, R.; Therien, M. J.. - In: THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS. - ISSN 1948-7185. - 14:45(2023), pp. 10271-10277. [10.1021/acs.jpclett.3c02722]
Ko, C. -H.; Zhu, Q.; Bullard, G.; Tassinari, F.; Morisue, M.; Naaman, R.; Therien, M. J.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1328741
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