Sun Jianhan, Gao Kun, Lin Xiangyun, Gao Chang, Ti Dan, Zhang Zhipan
Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Key Laboratory of Cluster Science, Ministry of Education of China, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100081, P. R. China.
ACS Appl Mater Interfaces. 2021 Jan 13;13(1):419-428. doi: 10.1021/acsami.0c16677. Epub 2021 Jan 1.
Self-powered devices have great potential in daily applications ranging from portable electronics to wearable body sensors, yet their working lifetime and performance are normally limited by the low energy density of the power unit as well as additional resistive losses induced by connections between electronic and power moieties. Herein, we report an effective programmable laser-assisted fabrication of facilely integrated microphotocapacitors (integrated devices of solar cells and microsupercapacitors, mPCs) exhibiting high output voltage and energy density (32.3 μWh cm). An mPC pack (8 mPCs in series within a size of 3 × 3 cm) delivers an excellent of 7.3 V, and an output voltage of 90 V can be obtained with an array of 14 mPC packs when tested outdoors under solar illumination (63 mW cm), setting a new benchmark for integrated self-charging power packs. These devices have also shown good stability (stable operation over 2000 cycles, 2.1 × 10 s) and performance under low- or intermittent-intensity light illuminations, highlighting their abilities to work indoors or under cloudy weather.
自供电设备在从便携式电子设备到可穿戴人体传感器等日常应用中具有巨大潜力,然而其工作寿命和性能通常受到电源单元低能量密度以及电子和电源部分之间连接所引起的额外电阻损耗的限制。在此,我们报告了一种有效的可编程激光辅助制造方法,用于轻松集成的微型光电器件(太阳能电池和微型超级电容器的集成器件,即微型光电器件),其具有高输出电压和能量密度(32.3 μWh/cm)。一个微型光电器件组(在3×3 cm的尺寸内8个微型光电器件串联)可提供出色的7.3 V电压,在户外太阳光照(63 mW/cm)下测试时,14个微型光电器件组的阵列可获得90 V的输出电压,为集成自充电电源组树立了新的标杆。这些器件在低强度或间歇性光照下也表现出良好的稳定性(在2000次循环、2.1×10秒内稳定运行)和性能,突出了它们在室内或阴天天气下工作的能力。