Chiral Optoelectronic Functionalities <i>via</i> DNA-Organic Semiconductor Complex.

Han, Moon Jong; Yun, Hee Seong; Cho, Yongjoon; Kim, Minkyu; Yang, Changduk; Tsukruk, Vladimir V; Yoon, Dong Ki · ACS Nano · 2021

basic_science · Level V

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Abstract

We fabricate the bio-organic field-effect transistor (BOFET) with the DNA-perylene diimide (PDI) complex, which shows unusual chiroptical and electrical functionalities. DNA is used as the chirality-inducing scaffold and the charge-injection layer. The shear-oriented film of the DNA-PDI complex shows how the large-area periodic molecular orientation and the charge transport are related, generating drastically different optoelectronic properties at each DNA/PDI concentration. The resultant BOFET reveals chiral structures with a high charge carrier mobility, photoresponsivity, and photosensitivity, reaching 3.97 cm<sup>2</sup> V<sup>-1</sup> s<sup>-1</sup>, 1.18 A W<sup>-1</sup>, and 7.76 × 10<sup>3</sup>, respectively. Interestingly, the BOFET enables the definitive response under the handedness of circularly polarized light with a high dissymmetry factor of approximately +0.14. This work highlights the natural chirality and anisotropy of DNA material and the electron conductivity of organic semiconducting molecules to be mutually used in significant chiro-optoelectronic functions as an added ability to the traditional OFET.

Medical subject headings