Synthesis and Characterization of a highly crystalline benzotriazole-selenophene copolymer semiconductor

  • Lee, Eunbyuel
  • Shin, Woojin
  • Bae, Onyu
  • Kim, Felix Sunjoo
  • Hwang, Ye-Jin
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초록

A new donor (D)-acceptor (A) type copolymer semiconductor based on benzotriazole and selenophene was designed and synthesized. The benzotriazole-selenophene copolymer (P(BTz-Se)) showed a highly crystalline lamellar packing structure with a lamellar interchain distance of 1.77 nm and large mean crystalline domain size of 17.26 nm. The average field-effect hole mobility of an as-cast P(BTz-Se) film was 2.93 x 10(-4) cm(2) V-1 s(-1). After annealing the polymer film at 150 degrees C, a 55-fold enhanced average hole mobility (1.61 x 10(-2) cm(2) V-1 s(-1)) with high on/off current ratio (1.7 x 10(6)) was observed. In addition to the great charge carrier mobility, P(BTz-Se) showed a narrow energy bandgap (1.69 eV) and broad optical absorption range with excellent absorption coefficient, suggesting that this copolymer semiconductor may also be a good electron donor in organic photovoltaic devices.

키워드

BenzotriazoleSelenopheneConjugated copolymerp-channel organic transistorsPOLYMER SOLAR-CELLSFIELD-EFFECT TRANSISTORSEFFECT CARRIER MOBILITYCONJUGATED POLYMERSCHARGE-TRANSPORTNAPHTHALENE DIIMIDEOPTICAL-PROPERTIESSIDE-CHAINSLOW-BANDGAPBENZOTHIADIAZOLE
제목
Synthesis and Characterization of a highly crystalline benzotriazole-selenophene copolymer semiconductor
저자
Lee, EunbyuelShin, WoojinBae, OnyuKim, Felix SunjooHwang, Ye-Jin
DOI
10.1016/j.polymer.2019.121856
발행일
2019-12-05
유형
Article
저널명
Polymer
184