Bioinspired Multifunctional Organic Transistors Based on Natural Chlorophyll/Organic Semiconductors.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 32500583.
- Also identified by DOI 10.1002/adma.202001227.
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Abstract
Inspired by the photosynthesis process of natural plants, multifunctional transistors based on natural biomaterial chlorophyll and organic semiconductors (OSCs) are reported. Functions as photodetectors (PDs) and light-stimulated synaptic transistors (LSSTs) can be switched by gate voltage. As PDs, the devices exhibit ultrahigh photoresponsivity up to 2 × 10<sup>6</sup> A W<sup>-1</sup> , detectivity of 6 × 10<sup>15</sup> Jones, and I<sub>photo</sub> /I<sub>dark</sub> ratio of 2.7 × 10<sup>6</sup> , which make them among the best reported organic PDs. As LSSTs, important synaptic functions similar to biological synapses are demonstrated, together with a dynamic learning and forgetting process and image-processing function. Significantly, benefiting from the ultrahigh photosensitivity of chlorophyll, the lowest operating voltage and energy consumption of the LSSTs can be 10<sup>-5</sup> V and 0.25 fJ, respectively. The devices also exhibit high flexibility and long-term air stability. This work provides a new guide for developing organic electronics based on natural biomaterials.
Medical subject headings
- Biomimetics
- Chlorophyll
- Transistors, Electronic