Department of Robotics, Division of Mechanical Engineering, Tohoku University, 6-6-01 Aoba, Aramakiaza, Aobaku, Sendaishi, Miyagi, 980-8579, Japan.
Small. 2023 Apr;19(15):e2205598. doi: 10.1002/smll.202205598. Epub 2023 Jan 18.
A pseudo-capacitor with transient behavior is applied in implantable, disposable, and bioresorbable devices, incorporating an Na ion-doped bioderived ionic liquid, molybdenum trioxide (MoO )-covered molybdenum foil, and silk sheet as the electrolyte, electrode, and separator, respectively. Sodium lactate is dissolved in choline lactate as a source of Na ions. The Experimental results reveal that the Na ions are intercalated into the van der Waals gaps in MoO , and the pseudo-capacitor shows an areal capacitance (1.5 mF cm ) that is three times larger than that without the Na ion. The fast ion diffusion of the electrolyte and the low resistance of the MoO and Mo interface result in an equivalent series resistance of 96 Ω. A cycle test indicates that the pseudo-capacitor exhibited a high capacitance retention of 82.8% after 10 000 cycles. The transient behavior is confirmed by the dissolution of the pseudo-capacitor into phosphate-buffered saline solution after 101 days. Potential applications of transient pseudo-capacitors include electronics without the need for device retrieval after use, including smart agriculture, implantable, and wearable devices.
一种具有瞬态行为的赝电容器应用于可植入、一次性和可生物吸收的设备中,其包含钠离子掺杂的生物衍生离子液体、氧化钼(MoO )覆盖的钼箔以及丝片,分别作为电解质、电极和隔膜。乳酸钠溶解在乳酸胆碱中作为钠离子的来源。实验结果表明,钠离子嵌入到 MoO 的范德华间隙中,赝电容器的比面积电容(1.5 mF·cm )是没有钠离子的三倍。电解质的快速离子扩散和 MoO 和 Mo 界面的低电阻导致等效串联电阻为 96 Ω。循环测试表明,在 10 000 次循环后,赝电容器的电容保持率高达 82.8%。101 天后,在磷酸盐缓冲盐溶液中溶解证明了赝电容器具有瞬态行为。瞬态赝电容器的潜在应用包括在使用后无需设备回收的电子设备,包括智能农业、可植入和可穿戴设备。