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Optical Simulation Study on Indoor Organic Photovoltaics with Textured Electrodes towards Self-powered Photodetector
( Swarup Biswas ) , ( Hyeok Kim )
센서학회지 28권 4호 236-239(4pages)
UCI I410-ECN-0102-2019-500-001459967
이 자료는 4페이지 이하의 자료입니다.

In this work, we performed an optical simulation study on the performance of a PMDPP3T:PCBM based on an organic photovoltaic (PV) device. The virtual PV device was developed in Lumerical, finite-difference time-domain (FDTD) solutions. Different layers of the PV cell have been defined through the incorporation of complex refractive index value of those layers’ constituent materials. During the simulation study, the effect of the variation active layer thickness on an ideal short circuit current density (Jsc, ideal) of the PV cell has been, first, observed. Thereafter, we have investigated the impact of surface roughness of a transparent conducting oxide (TCO) electrode on Jsc,ideal of the PV cells. From this simulation, it has been observed that the Jsc,ideal value of the PV cell is strongly dependent on the thickness of its active layer and the photon absorption of the PV cell has gradually decreased with the increment of the TCO’s surface roughness. As a result, the capability of the PV device has been reduced with the increment of the surface roughness of the TCO.

1. INTRODUCTION
2. EXPERIMENTAL
3. RESULTS AND DISCUSSION
4. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES
[자료제공 : 네이버학술정보]
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