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先进的储能系统作为生物传感技术的动力来源
Clara R Pereira1, André M Pereira2, Joana S Teixeira1
1REQUIMTE/LAQV, Department of Chemistry and Biochemistry, Faculty of Sciences, University of Porto, Porto, Portugal.
Progress in molecular biology and translational science
|July 19, 2025
概括
先进的储能系统对于可穿戴,可摄入和可植入 (WII) 生物传感器至关重要. 这次审查涵盖了电池,超级电容器,生物燃料电池和WII生物传感技术的无线电源方面的进展.
科学领域:
- 生物医学工程 生物医学工程
- 材料科学 材料科学 材料科学
- 能源系统 能源系统
背景情况:
- 可穿戴,可吞和可植入 (WII) 生物传感技术需要高效和可持续的电源.
- 有效的能源管理对于WII生物传感器的可靠性和性能至关重要.
研究的目的:
- 概述了WII生物传感应用的先进能源存储系统的最新发展.
- 突出了与WII生物传感器相关的各种储能和采集技术的进展.
主要方法:
- 综述了储能技术近期的进展.
- 讨论能源采集和无线电力传输系统.
- 分析自动供电的能源采集/储存设备.
主要成果:
- 电池,超级电容器和生物燃料电池的进展,用于第二次世界大战的生物传感.
- 无线电力传输和自动供电设备的发展.
- 对WII生物传感器的综合能源解决方案的概述.
结论:
- 在WII生物传感的能量储存方面取得了重大进展.
- 确定了推动WII生物传感技术的关键挑战和未来前景.
关键词:
电池 电池 电池 电池 电池生物燃料电池是一种生物燃料电池.生物感知技术的技术电化学超级电容器 电化学超级电容节能采集 节能采集 节能采集储能储能是指储能过程中的能量.自动驱动的混合动力能源技术无线电力传输系统是无线电力传输系统.更多相关视频
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