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July 15, 1995Physical review. B, Condensed matter142 citations

Trap distribution for charge carriers in poly(paraphenylene vinylene) (PPV) and its substituted derivative DPOP-PPV

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HMHemmo MeyerDHD. HaarerHNH. Naarmann

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Abstract

In this paper, we present measurements of the charge-carrier transport in the conjugated polymer poly (paraphenylenevinylene) (PPV) and its substituted derivative poly (1, 4-phenylene-1, 2-diphen- oxyphenyl vinylene) (DPOP-PPV) by using the time-of-flight technique. A method for evaluating the experiments, based on Fourier transform techniques, is presented to calculate the density of localized states from the measured photocurrent within a multiple trapping model. The transport properties of DPOP-PPV can be described by a conventional hopping mechanism, where nearly every monomer acts as a trap. At room temperature, the effective mobility for holes in DPOP-PPV is in the range of 10^-4 cm^2/V s, whereas for PPV, a value of less than 10^-8 cm^2/V s can be estimated.

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Cite This Study

Meyer et al. (1995) studied this question.

synapsesocial.com/papers/6a16fc4cc7240d1a707bddcehttps://doi.org/10.1103/physrevb.52.2587
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