#7030. An organic memory phototransistor based on oxygen-assisted persistent photoconductivity
December 2026 | publication date |
Proposal available till | 06-06-2025 |
4 total number of authors per manuscript | 0 $ |
The title of the journal is available only for the authors who have already paid for |
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Journal’s subject area: |
Electronic, Optical and Magnetic Materials;
Chemistry (all);
Condensed Matter Physics;
Materials Chemistry;
Electrical and Electronic Engineering;
Biomaterials; |
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Abstract:
Persistent photoconductivity (PPC) behavior in organic phototransistors has fascinating potentials in applications of photoelectronic devices. A key issue is how the presence of air affects the PPC behavior. Here, combining with the theoretical and experimental results, the PPC behavior is associated with photogenerated electrons trapped in oxygen atom-induced the reduced Lowest Unoccupied Molecular Orbitals or oxygen molecule-induced new trap state within energy bandgap of organic semiconductor. Inspired by the potential applications arising from the PPC behavior, organic memory phototransistors (OMPTs) are achieved by light programming and electrical erasing. The OMPTs show bistable current states as well as long retention times. Our results suggested that oxygen in air plays a key role in PPC behavior and provides a guidance for controlling the PPC behavior toward integrated multifunctional optoelectronic devices.
Keywords:
Organic memory phototransistor; Organic phototransistor; Oxygen-induced trap states; Persistent photoconductivity; Two-dimensional molecular crystals
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