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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Modeling the Transient Space-Charge-Limited Current Response of Organic Semiconductor Diodes Using the Master Equation Approach
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Modeling the Transient Space-Charge-Limited Current Response of Organic Semiconductor Diodes Using the Master Equation Approach

机译:使用主方程方法对有机半导体二极管的瞬态空间电荷限制电流响应进行建模

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Application of the master equation approach to the space-charge-limited transient situation is considered. The transient responses of thin organic films are simulated by solving the master equation of transport coupled with the Poisson equation. Hopping of the charge carriers between sites is described by the Miller–Abrahams formula. Sites with the Gaussian energetic distribution are localized on a Cartesian lattice. The solutions are calculated using the fully coupled Newton–Raphson method. The details of implementation permitting efficient stationary and transient simulation of unipolar transport are given. This approach gives much better agreement to the experimentally observed space-charge-limited current transient responses than the widely used drift-diffusion model. It is shown that the time position of the transient peak is affected by the contact barrier height. In the case of thin strongly disordered samples, the best observability of the peak is predicted for the intermediate values of the contact barrier.
机译:考虑将主方程方法应用于空间电荷受限的瞬态情况。通过求解与泊松方程耦合的传输主方程,可以模拟有机薄膜的瞬态响应。 Miller-Abrahams公式描述了位点之间的载流子跃变。具有高斯能量分布的站点位于笛卡尔网格上。使用完全耦合的牛顿-拉夫森方法计算解。给出了实现单极性传输的有效平稳和瞬态仿真的实现细节。与广泛使用的漂移扩散模型相比,该方法对实验观察到的空间电荷限制电流瞬态响应具有更好的一致性。结果表明,瞬变峰的时间位置受接触势垒高度的影响。对于稀薄的强无序样品,对于接触势垒的中间值,可以预测该峰的最佳可观察性。

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