An Ultraviolet Photodetector With an Active Layer Composed of Solution Processed Polyfluorene:zn0.71cd0.29s Hybrid Nanomaterials

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Abstract

An ultraviolet photodetector with an active layer of solution processed polymer:quantum dot hybrid is introduced. Poly[9,9-di-(2-ethylhexyl)-fluorenyl- 2,7-diyl] represents the polymer and Zn0.71Cd0.29S is the quantum dot used for the device. Photophysical studies showed that an electron transfer from the polymer to the ternary quantum dot is thermodynamically favored. Quenching experiments performed between the polymer and quantum dot indicates the formation of a non-fluorescent complex with an association constant of 4.6 × 104 M-1. The device structure of ITO/PEDOT:PSS/ADS231BE: 50 wt% Zn0.71Cd0.29S/Al yielded a photoresponsivity value of 324 mA/W at -4 V under 1 mW/cm2 illumination at 365 nm at room temperature and this value is further increased to 380 mA/W as a result of annealing at 75 °C.

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Keywords

Conjugated polymer, Hybrid system, Quantum dot, Ultraviolet photo detector, Semiconductor quantum dots, Hybrid system, Ultraviolet photo detector, Conjugated polymer, Quantum dot, Semiconductor quantum dots

Fields of Science

02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences

Citation

Sevim, S., Memişoǧlu, G., Varlıklı, C.,Doǧan, L. E., Taşçıoğlu, D., and Özçelik, S. (2016). An ultraviolet photodetector with an active layer composed of solution processed polyfluorene:Zn0.71Cd0.29S hybrid nanomaterials. Applied Surface Science, 305, 227-234. doi:10.1016/j.apsusc.2014.03.042

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305

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227

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234
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