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A miniaturized, self-sustaining, and integrable bio-solar power system

机译:小型化,自我维持和可集的生物太阳能系统

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摘要

We demonstrate a practical and sustainable bacterial power source for low-power electronic applications. Self-sustainable electricity is produced from revolutionarily structured microliter-scale bio-solar cells using a coculture of heterotrophic and autotrophic bacteria. Two bio-solar cells are integrated on a single chip and connected in series, continuously generating light-responsive electricity from heterotrophic bacterial respiration with the organic substrates produced by photosynthetic autotrophs. Agar-based anolyte, catholyte, and salt-bridge provided solid-state ionic environments for more efficient syntrophic interactions between co-cultures without bacterial competition, further enhancing the device performance and lifespan. The solid-phase platform allows versatile device configuration in a small footprint without a cumbersome fluidic feeding system and permits easy integration and operation with solid-state applications. The device is sealed with a gas-permeable polydimethylsiloxane (PDMS) membrane to facilitate gas exchange to the bacteria and cathodic reactions, even ideally allowing for replenishing bacterial gasses from environments for self-sustainable energy harvesting. A DC-DC booster circuit is integrated with the stacked bio-solar cells to increase the operational voltage (similar to 500 mV) to a maximum output of >3 V for self-powering an on-chip, light-emitting diode (LED). This is the first demonstration of the microliter-scale bio-solar cell as a practical power source.
机译:我们证明了用于低功率电子应用的实用和可持续的细菌电源。利用异养和自养细菌的共培养,从革命性的微升的微升性生物太阳能电池生产自我可持续性电力。两种生物太阳能电池集成在单个芯片上并串联连接,连续地从异养细菌呼吸与由光合作用的有机基底一起产生光响应电力。基于琼脂的阳极电解液,阴极电解液和盐桥提供了固态离子环境,以便在没有细菌竞争的同培养物之间进行固态离子环境,进一步增强装置性能和寿命。固相平台允许在没有麻烦的流体供给系统的小占地面积中进行多功能设备配置,并且允许使用固态应用轻松集成和操作。将该装置用透气的聚二甲基硅氧烷(PDMS)膜密封,以促进气体交换与细菌和阴极反应,甚至理想地允许从用于自我可持续的能量收集的环境中补充细菌气体。 DC-DC增压电路与堆叠的生物太阳能电池集成,以将操作电压(类似于500 mV)增加到最大输出> 3 V的最大输出,用于自供电的片上,发光二极管(LED) 。这是MicroLiter级生物太阳能电池作为实际电源的第一次演示。

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