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High-Performance Organic Energy-Harvesting Devices and Modules for Self-Sustainable Power Generation under Ambient Indoor Lighting Environments

机译:环境室内照明环境下的高性能有机能量收集装置和用于自我可持续发电的模块

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Organic photovoltaics (OPVs) that perform more efficiently under artificial indoor lighting conditions than they do under sunlight are attracting growing interest as they can potentially serve as ambient energy harvesters for powering low-power electronics and portable devices for the Internet of Things. Herein, solution-processed small-molecule OPVs are demonstrated to exhibit high power conversion efficiencies exceeding 16% under white LED illumination, delivering high output power densities of up to 12.4 and 65.3 mu W cm(-2) at 200 and 1000 lx, respectively. Increasing the open-circuit voltage (V-oc) of OPVs is a critical factor for achieving higher indoor photovoltaic performance. Toward real applications, this small-molecule OPV system is adopted to fabricate six series-connected modules with an active area of , similar to 10 cm(2) that are capable of generating a. high output power surpassing 100 mu W and a high V-oc, of over 4.2 V even under dimly lit indoor conditions of 200 lx. These results indicate that OPVs are promising as indoor electric power sources for self-sustainable electronic devices.
机译:在人造室内照明条件下更有效地执行的有机光伏(OPV)比在阳光下进行的更有效地吸引了日益增长的兴趣,因为它们可以作为环境能量收割机供电,用于供电的低功耗电子和便携式设备。在此,证明溶液加工的小分子OPV在白色LED照明下表现出超过16%的高功率转换效率,分别在200和1000 LX中输出高达12.4和65.3μW厘米(-2)的高输出功率密度。增加OPV的开路电压(V-OC)是实现更高的室内光伏性能的关键因素。对于真实的应用,采用该小分子OPV系统来制造六个系列连接的模块,其有源区域,类似于能够产生a的10cm(2)。高输出功率超过100μW和高V-OC,即使在200Lx的纬度下调室内条件下也有超过4.2V。这些结果表明,OPV与自我可持续电子设备的室内电源很有前途。

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