4.6 Article

Enhancement in fluorescence quantum yield of MEH-PPV:BT blends for polymer light emitting diode applications

期刊

OPTICAL MATERIALS
卷 80, 期 -, 页码 143-148

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.optmat.2018.04.046

关键词

Conjugated polymer; Fluorescence quantum yield; MEH-PPV; Benzothiadiazole; Polymer light emitting diodes; Electroluminescence

资金

  1. Ministry of Electronics and Information technology (MeitY), Govt. of India
  2. N.I.T.K., Surathkal

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We have investigated the effect of blending electron deficient heterocycle Benzothiadiazole (BT) on the photo physical properties of conjugated polymer Poly [2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene] (MEHPPV). Quantum yield (QY) value has been found to increase from 37% for pure MEH-PPV to 45% for an optimum MEH-PPV:BT blend ratio of 1:3. This can be attributed to the efficient energy transfer from the wide bandgap BT (host) to the small bandgap MEH-PPV (guest). The FTIR spectrum of MEH-PPV:BT blended thin film indicates suppression of aromatic C-H out-of-plane and in-plane bending, suggesting planarization of the conjugated polymer chains and, hence, leading to increase in the conjugation length. The increase in conjugation length is also evident from the red-shifted PL spectra of MEH-PPV:BT blended films. Single layer MEH-PPV:BT device shows lower turn-on voltage than single layer MEH-PPV alone device. Further, the effect of electrical conductivity of PEDOT:PSS on the current-voltage characteristics is investigated in the PLED devices with MEHPPV:BT blend as the active layer. PEDOT:PSS with higher conductivity as HIL reduces the turn on voltage from 4.5 V to 3.9 V and enhances the current density and optical output in the device.

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