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Recent Progress in Solar Cell Technology for Low-Light Indoor Applications

机译:弱光室内应用太阳能电池技术的最新进展

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Photovoltaic cells have recently attracted considerable attention for indoor energy harvesting for low-power-consumption electronic products due to the rapid growth of the Internet of Things (IoT). The IoT platform is being developed with a vision of connecting a variety of wireless electronic devices, such as sensors, household products, and personal data storage devices, which will be able to sense and communicate with their internal states or the external environment. A self-sustainable power source is required to power such devices under low light indoor environments. Inorganic photovoltaic cells show excellent device performance under 1 Sun illumination and dominate the market for outdoor applications. However, their performance is limited for indoor applications with low incident light intensities as they exhibit low photo-voltage. Among the emerging photovoltaic technologies, organic photovoltaics have unique advantages, including solution processibility, flexibility, and lightweight tailorable design; hence, they are considered the best solution for indoor light harvesting applications due to their high photo-voltage, strong absorption of UV-visible wavelengths, and a spectral response similar to that emitted by modern indoor lighting systems. In this review article, we discuss the factors affecting device performance of different photovoltaic technologies under low incident light intensities or indoor conditions and provide a comprehensive analysis of future opportunities for enhancing indoor performance of the photovoltaic devices. Furthermore, we discuss some of the results of semi-transparent organic solar cell which operated under complex environmental conditions like low illumination, incident light angle etc. Based on the results, one can suggest that semi-transparent organic solar cell is a more suitable case for progressive indoor solar cell. After highlighting the factors that limit indoor device performance of photovoltaic cells, we discuss potential applications of IoT devices powered by organic photovoltaic cells in indoor lighting environments.
机译:由于物联网(IoT)的快速发展,光伏电池最近在低能耗电子产品的室内能量收集方面引起了相当大的关注。物联网平台的开发愿景是连接各种无线电子设备,例如传感器,家用产品和个人数据存储设备,这些设备将能够感知其内部状态或外部环境并与之通信。在弱光室内环境下,需要使用自持电源为此类设备供电。无机光伏电池在1个太阳光下显示出优异的器件性能,并主导了户外应用市场。但是,由于它们具有低的光电压,因此对于具有低入射光强度的室内应用而言,它们的性能受到限制。在新兴的光伏技术中,有机光伏具有独特的优势,包括解决方案的可加工性,灵活性和轻巧的可定制设计。因此,由于它们具有高的光电压,对紫外线可见波长的强吸收性以及与现代室内照明系统类似的光谱响应,它们被认为是室内光收集应用的最佳解决方案。在这篇综述文章中,我们讨论了在低入射光强度或室内条件下影响不同光伏技术的器件性能的因素,并对增强光伏器件室内性能的未来机会进行了全面分析。此外,我们讨论了半透明有机太阳能电池在复杂环境条件下(例如低照度,入射光角度等)运行的一些结果。基于这些结果,我们可以建议半透明有机太阳能电池是一种更合适的情况用于渐进式室内太阳能电池。在强调了限制光伏电池室内设备性能的因素之后,我们讨论了由有机光伏电池供电的物联网设备在室内照明环境中的潜在应用。

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