2021年第82回応用物理学会秋季学術講演会

講演情報

一般セッション(口頭講演)

12 有機分子・バイオエレクトロニクス » 12.4 有機EL・トランジスタ

[12a-N205-1~12] 12.4 有機EL・トランジスタ

2021年9月12日(日) 09:00 〜 12:15 N205 (口頭)

瀧宮 和男(東北大)、井上 悟(東大)

11:15 〜 11:30

[12a-N205-9] Ambipolar transistor properties of segregated charge-transfer complexes

〇(M1)NikhilRao Mallela1、Tadashi Kawamoto1、Takehiko Mori1 (1.Tokyo Institute of Technology)

キーワード:Charge Transfer complexes, Organic Semiconductors, Organic Electronics

Charge-transfer complexes are composed of charge-donating (D) and charge-accepting (A) molecules. While the parent compounds are unipolar semiconductors, charge-transfer complexes are expected to show ambipolar transistor properties. We have previously reported that mixed stacked complexes are semiconducting, but show field-effect transistor properties. Even ionic charge-transfer complexes show transistor properties in the thin films. However, in general, segregated complexes are too highly conducting to show transistor properties. Here we report transistor properties of segregated 1,6-diaminopyrene (DAP) complexes of TCNQ and dimethyl-TCNQ. The segregated complex has a completely ionic ground state with the charge-transfer degree close to unity and thus behaves as a Mott-type insulator. Despite the high conductivity, after subtracting the bulk current of ~6 mA, the thin-film transistors show balanced ambipolar transistor properties, which are maintained down to 200 K. The newly prepared DMTCNQ complex exhibits similar ambipolar transistor properties.