Ideal p-n Diode Current Equation for Organic Heterojunction using a Buffer Layer: Derivation and Numerical Study

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作者
SeongMin Kim
Jaewook Ha
Jin-Baek Kim
机构
[1] The Office of Computational Energy Science (private lab),The part of modeling AND simulation of device physics
[2] Korea Advanced Institute of Science and Technology,Department of Chemistry
[3] Samsung Advanced Institute of Technology,CAE, Platform Technology Lab
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Organic heterojunction; Buffer layers; p-n diode equation;
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摘要
The equation of p-n diode current-voltage (J-V) of an organic heterojunction (HJ) including a hole and electron buffer layer is derived, and its characteristics are numerically simulated based on a polaron-pair model Giebink et al. (Forrest, Phys. Rev. B 82; 1–12, 2010). In particular, the correlation between a fraction of the potential drop for an electron/hole buffer (δe − b/δh − b) and for a donor (D)/acceptor (A) (δD/δA) is numerically investigated for J-V curves. As a result, the lowest diode current (DC) is obtained for the condition of δe − b + δA ≅ 0 or δD + δh − b ≅ 1. It is suggested that it is important to characterize the lowest DC curve for the state of D/A blending with a condition of a fraction of the potential drop (δe − b/δh − b). Under these circumstances, the transport of holes (h+) from a DC source at the reverse bias is effectively limited.
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页码:170 / 174
页数:4
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