The effect of introducing antibiotics into organic light-emitting diodes

  • Hafeez, Hassan
  • Jesuraj, P. Justin
  • Kim, Dong Hyun
  • Lee, Jong Chan
  • Shin, Jun Young
  • ... Kim, Chul Hoon
  • 외 24명
Citations

WEB OF SCIENCE

6
Citations

SCOPUS

5

초록

The quest to improve the performance of organic light-emitting diodes (OLEDs) has led to the exploration of new materials with properties like interfacial dipole, excitons generation, and bandgap alignment. Here, we exploit these strategies by investigating the interaction of the antibiotic ampicillin with a widely used optoelectronic material, to fabricate state-of-the-art OLEDs. The charge distribution on the ampicillin molecule facilitates the generation of an interfacial dipole with a large magnitude. The optimum fusion of the two materials provides an enhanced bandgap alignment, charge balance and J/H-aggregated excitons. Values of current efficiency (120 cdA(-1)), external quantum efficiency (similar to 35%) and power efficiency (70 lmW(-1)) are demonstrated. The cross-evaluation of performance with penicillin devices indicates the significance of ampicillin's specific molecular structure in improving performance. The detailed investigations demonstrate that ampicillin has superior optoelectronic properties with high potential to contribute extensively in OLEDs and photovoltaics.

키워드

POLYMER SOLAR-CELLSINTERFACIAL LAYERWORK-FUNCTIONARTIFICIAL-INTELLIGENCEPHOTOVOLTAIC CELLSHIGHLY EFFICIENTAMPICILLINDERIVATIVESPEDOTPSS
제목
The effect of introducing antibiotics into organic light-emitting diodes
저자
Hafeez, HassanJesuraj, P. JustinKim, Dong HyunLee, Jong ChanShin, Jun YoungRhee, Sang HoLee, Won HoChoi, Dae KeunCha, Jun HwanLee, Chang MinKim, Chul HoonLamichhane, JanardanPokhrel, AnayaKim, Tae-SuSohng, Jae KyungYun, Hyung JoongPark, Jong BaeChung, Hee-SukBae, Tae-SungLee, Sang GeulPark, Hyun-WooChung, Kwun-BumSong, AeranKwon, Jang HyukBae, Hyeong WooKang, Yong-CheolPark, JuyunSong, MyungkwanKim, Chang-SuRyu, Seung Yoon
DOI
10.1038/s42005-019-0228-3
발행일
2019-10-21
유형
Article
저널명
Communications Physics
2