Abstract

Photonic crystal has been proved to manipulate light effectively and improve the performance of solar cells. In this paper, high-performance GaAs-based solar cells with photonic crystal were fabricated to decrease the dependence on the angle of incident light. Photoluminescence (PL) intensity of solar cells with photonic crystal reduced only 8% when the incident angle changed from 10° to 30°, while the PL intensity of the ordinary solar cells decreased 39% under the same condition. It manifests the photonic crystal can manipulate the incident light in turn reduce the dependence of incident light angle. Besides, the short circuit current of solar cells was increased by 32% after the photonic crystal was added. When the incident angle of light increased to 30° from 0°, the short circuit current of ordinary solar cell decreased 29.5%, while that of solar cell with photonic crystals reduced 12%. Correspondingly, the photoelectric conversion efficiency (PCE) of ordinary solar cells was reduced 31.2%. In contrast, solar cells with photonic crystal decreased only 11.5%. The enhancement factor of the PCE of solar cells with photonic crystal to that of ordinary solar cells increases from 1.26 to 1.6 as the incident angle rises to 30°from 0°. In summary, solar cells with photonic crystal are less sensitive to the incident angle and could absorb more light without angle limits, then increase the PCE. These solar cells with photonic crystals are promising in low-cost and high power conversion efficiency solar cell fields.

Highlights

  • S OLAR energy, one of the most important energy sources in the future, is renewable and clean [1], [2]

  • We can see that the enhancement factor of the photoelectric conversion efficiency (PCE) of Photonic crystal SC (PCSC) to that of ordinary SC (OSC) increases from 1.26 to 1.6 as the incident angle rises to 30° from 0°, showing that PC plays a more and more indispensable role in light manipulation

  • When the incident light angle rises to 30°, the PL intensity is only 8% less than that of the incident light angle staying at 10°

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Summary

INTRODUCTION

S OLAR energy, one of the most important energy sources in the future, is renewable and clean [1], [2]. The PCE of six-junction SCs has reached 47.1% [12]. The SC cannot always work in the optimal condition because the PCE would vary with the angle of incident light [18]–[21]. Engineers constantly use an angel regulator to keep the panel perpendicular to the sunlight incident direction [22]. This method does not fit in situations as assembling the SC on the object surface. PC has been shown a capacity to manipulate the light It could form a high-quality full-azimuth antireflection layer [23]–[25]. Compared with the ordinary SC (OSC), the performance of PCSC is better and less sensitive to the incident light angle

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