Implantable Batteries for Bioelectronics

IF 14 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yiding Jiao, Er He, Tingting Ye, Yuanzhen Wang, Haotian Yin, Ye Zhang
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引用次数: 0

Abstract

Implantable bioelectronics that interface directly with biological tissues have been widely used to alleviate symptoms of chronic diseases, restore lost or degraded body functions, and monitor health conditions in real-time. These devices have revolutionized medicine by providing continuous therapeutic interventions and diagnostics. Energy sources are the most critical components in implantable bioelectronics, as they determine operational lifetime and reliability. Compared with other energy storage and harvesting devices and wireless charging methods, batteries provide high energy density and stable power output, making them the preferred choice for many implantable applications. The advent of implantable bioelectronic devices has been significantly propelled by the high energy densities offered by lithium battery technology, which has led to a profound transformation in our daily lives.

Abstract Image

生物电子学的植入式电池
植入式生物电子学直接与生物组织连接,已广泛用于缓解慢性疾病的症状,恢复失去或退化的身体功能,并实时监测健康状况。这些设备通过提供持续的治疗干预和诊断,彻底改变了医学。能源是植入式生物电子学中最关键的组成部分,因为它们决定了操作寿命和可靠性。与其他能量存储和收集设备以及无线充电方法相比,电池提供高能量密度和稳定的功率输出,使其成为许多植入式应用的首选。锂电池技术提供的高能量密度极大地推动了植入式生物电子设备的出现,这给我们的日常生活带来了深刻的变化。
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CiteScore
17.70
自引率
0.00%
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