基于电子功能化的植物根的生物混合储能电路
Daniela Parker1, Abdul Manan Dar1, Adam Armada-Moreira1,2
1Laboratory of Organic Electronics, Department of Science and Technology, Linköping University, Norrköping SE-60174, Sweden.
ACS applied materials & interfaces
|March 5, 2024
概括
研究人员创建了基于植物的生物混合电路,使用功能化的导电根来增强能量储存. 这些根超级电容器可以串联或并行连接,为可持续的电子产品提供更好的电压和电容.
科学领域:
- 生物混合系统是生物混合系统.
- 植物性电子产品 植物性电子产品
- 可持续的储能储能是一种可持续的储能.
背景情况:
- 生物混合系统将植物结构与可持续性技术相结合.
- 植物生物催化使得活植物中的电子材料组织成为可能,从而创造出生物混合电化学装置.
- 现有的植物性超级电容器具有有限的电容和输出电压.
研究的目的:
- 开发使用功能化的导电根的生物混合电路,以提高基于植物的储能性能.
- 为了展示连续和并行配置的根超级电容器.
- 展示低消耗设备可持续供电的潜力.
主要方法:
- 植物根的功能化,以创建导电通道.
- 在超级电容器电路中集成功能化的根.
- 在串行和并行安排中配置根超级电容器.
- 使用有机光伏电池充电电路.
- 供电生物电子设备和电色显示器.
主要成果:
- 在系列配置中达到高达1.5V的输出电压.
- 在并行配置中达到高达11mF的电容.
- 通过有机光伏电池成功充电.
- 展示了驱动电色显示器和生物电子设备的能力.
- 证实了功能化的根与本地根类似地生物降解.
结论:
- 基于功能化的导电根的生物混合电路显著扩大了基于植物的能量存储的性能.
- 这些系统为供电低消耗设备提供了可持续的方法,包括农业生物电子和物联网 (IoT) 应用.
- 该技术为未来的生物电子应用提供了一个可行的,环保的替代方案.
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