School of Physical Science and Technology, Lanzhou University, Lanzhou, 730000, P. R. China.
Microsystem Research Center, Chongqing University, Chongqing, 400044, P. R. China.
Adv Mater. 2023 Jun;35(25):e2301218. doi: 10.1002/adma.202301218. Epub 2023 May 1.
The main challenge faced by the forthcoming human-computer interaction is that biological systems and electronic devices adopt two different information carriers, i.e., ions and electrons, respectively. To bridge the gap between these two systems, developing ion/electron-coupling devices for logic operation is a feasible and effective approach. Accordingly, herein a supercapacitor-based ionic diode (CAPode) that takes electrochemically amorphized molybdenum oxide as the working electrode is developed. Benefiting from its unique size and charge dual ion-sieving effects, the molybdenum oxide electrode exhibits a record-high rectification ratio of 136, which is over 10 times higher than those of reported systems. It also delivers an ultrahigh specific capacitance of 448 F g⁻ and an excellent cycling stability of up to 20 000 cycles, greatly outperforming those of previous works. These excellent rectification capability and electrochemical performances allow the as-built CAPode to work well in AND and OR logic gates, validating great potential in ion/electron-coupling logic operations. More attractively, the superior biocompatibilities of molybdenum oxide and relevant constituent materials enable the constructed CAPode to be applied as bioelectronics without regard to biosafety, paving a new way toward forthcoming human-computer interaction.
即将到来的人机交互面临的主要挑战是,生物系统和电子设备分别采用两种不同的信息载体,即离子和电子。为了弥合这两个系统之间的差距,开发用于逻辑运算的离子/电子耦合器件是一种可行且有效的方法。因此,本文开发了一种基于超级电容器的离子二极管(CAPode),其工作电极采用电化学非晶态氧化钼。得益于其独特的尺寸和电荷双重离子筛分效应,氧化钼电极表现出创纪录的 136 的高整流比,比报道的系统高 10 倍以上。它还提供了超高的比电容 448 F g⁻ 和出色的循环稳定性,可达 20000 次循环,大大优于以前的工作。这些出色的整流能力和电化学性能使所构建的 CAPode 能够在 AND 和 OR 逻辑门中很好地工作,验证了其在离子/电子耦合逻辑运算中的巨大潜力。更吸引人的是,氧化钼和相关组成材料的卓越生物相容性使构建的 CAPode 能够作为生物电子设备而无需考虑生物安全性,为即将到来的人机交互开辟了一条新途径。