Zhang Yujia, Sun Tianyi, Yang Xingyun, Zhou Linna, Tan Cheryl M J, Lei Ming, Bayley Hagan
Department of Chemistry, University of Oxford, Oxford, UK.
Institute of Electrical and Microengineering, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Nat Chem Eng. 2024;1(11):691-701. doi: 10.1038/s44286-024-00136-z. Epub 2024 Oct 25.
Advances in the development of tiny devices with sizes below a few cubic millimeters require a corresponding decrease in the volume of driving power sources. To be minimally invasive, prospective power sources in biomedical devices must be fabricated from soft materials. Previous endeavors with droplet-based devices have produced promising miniature power sources; however, a droplet-based rechargeable battery has remained out of reach. Here we report a microscale soft flexible lithium-ion droplet battery (LiDB) based on the lipid-supported assembly of droplets constructed from a biocompatible silk hydrogel. Capabilities such as triggerable activation, biocompatibility and biodegradability and high capacity are demonstrated. We have used the LiDB to power the electrophoretic translocation of charged molecules between synthetic cells and to mediate the defibrillation and pacing of ex vivo mouse hearts. By the inclusion of magnetic particles to enable propulsion, the LiDB can function as a mobile energy courier. Our tiny versatile battery will thereby enable a variety of biomedical applications.
尺寸小于几立方毫米的微型设备的发展进步,要求驱动电源的体积相应减小。为实现微创,生物医学设备中的理想电源必须由软材料制成。此前基于液滴的设备研究已产生了很有前景的微型电源;然而,基于液滴的可充电电池仍难以实现。在此,我们报告一种基于生物相容性丝水凝胶构建的液滴的脂质支撑组装体的微型柔性锂离子液滴电池(LiDB)。该电池展示出了诸如可触发激活、生物相容性和生物可降解性以及高容量等特性。我们已使用LiDB为带电分子在合成细胞之间的电泳转运提供动力,并介导离体小鼠心脏的除颤和起搏。通过加入磁性颗粒以实现推进,LiDB可作为移动能量载体。因此,我们这种小巧通用的电池将能够实现多种生物医学应用。