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Solar Cells for Indoor Applications: Progress and Development

机译:室内太阳能电池:进展与发展

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摘要

The Internet of things (IoT) has been rapidly growing in the past few years. IoT connects numerous devices, such as wireless sensors, actuators, and wearable devices, to optimize and monitor daily activities. Most of these devices require power in the microwatt range and operate indoors. To this end, a self-sustainable power source, such as a photovoltaic (PV) cell, which can harvest low-intensity indoor light, is appropriate. Recently, the development of highly efficient PV cells for indoor applications has attracted tremendous attention. Therefore, different types of PV materials, such as inorganic, dye-sensitized, organic, and perovskite materials, have been employed for harvesting low-intensity indoor light energy. Although considerable efforts have been made by researchers to develop low-cost, stable, and efficient PV cells for indoor applications, Extensive investigation is necessary to resolve some critical issues concerning PV cells, such as environmental stability, lifetime, large-area fabrication, mechanical flexibility, and production cost. To address these issues, a systematic review of these aspects will be highly useful to the research community. This study discusses the current status of the development of indoor PV cells based on previous reports. First, we have provided relevant background information. Then, we have described the different indoor light sources, and subsequently critically reviewed previous reports regarding indoor solar cells based on different active materials such as inorganic, dye-sensitized, organic, and perovskite. Finally, we have placed an attempt to provide insight into factors needed to further improve the feasibility of PV technology for indoor applications.
机译:物联网(IoT)在过去几年中一直在快速增长。物联网连接许多设备,例如无线传感器,执行器和可穿戴设备,以优化和监控日常活动。这些设备大多数都需要在微瓦范围内供电,并在室内运行。为此,合适的是一种自我可持续的电源,例如可以收集低强度室内光的光伏(PV)电池。近来,用于室内应用的高效光伏电池的开发引起了极大的关注。因此,已经采用了不同类型的PV材料(例如无机材料,染料敏化材料,有机材料和钙钛矿材料)来收集低强度的室内光能。尽管研究人员已经做出了巨大的努力来开发低成本,稳定,高效的室内光伏电池,但是需要进行广泛的研究来解决一些与光伏电池有关的关键问题,例如环境稳定性,寿命,大面积制造,机械灵活性和生产成本。为了解决这些问题,对这些方面进行系统的审查对于研究界将非常有用。这项研究根据先前的报告讨论了室内光伏电池的发展现状。首先,我们提供了相关的背景信息。然后,我们描述了不同的室内光源,随后严格审查了有关基于不同活性材料(例如无机,染料敏化,有机和钙钛矿)的室内太阳能电池的先前报道。最后,我们尝试提供深入了解进一步提高PV技术在室内应用中的可行性所需的因素的见识。

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