Materials Science and Engineering, Physical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.
College of Applied Medical Science, King Saud bin Abdulaziz University for Health Sciences, Jeddah 22384, Saudi Arabia.
ACS Nano. 2020 Mar 24;14(3):3199-3207. doi: 10.1021/acsnano.9b08462. Epub 2020 Feb 25.
Ultrasound is a source of ambient energy that is rarely exploited. In this work, a tissue-mimicking MXene-hydrogel (M-gel) implantable generator has been designed to convert ultrasound power into electric energy. Unlike the present harvesting methods for implantable ultrasound energy harvesters, our M-gel generator is based on an electroacoustic phenomenon known as the streaming vibration potential. Moreover, the output power of the M-gel generator can be improved by coupling with triboelectrification. We demonstrate the potential of this generator for powering implantable devices through quick charging of electric gadgets, buried beneath a centimeter thick piece of beef. The performance is attractive, especially given the extremely simple structure of the generator, consisting of nothing more than encapsulated M-gel. The generator can harvest energy from various ultrasound sources, from ultrasound tips in the lab to the probes used in hospitals and households for imaging and physiotherapy.
超声是一种很少被利用的环境能源。在这项工作中,设计了一种组织模拟 MXene-水凝胶(M-凝胶)植入式发电机,用于将超声功率转换为电能。与目前用于植入式超声能量收集器的收集方法不同,我们的 M-凝胶发电机基于一种称为流致振动电势的电声现象。此外,通过与摩擦起电相结合,可以提高 M-凝胶发电机的输出功率。我们通过给埋在一厘米厚牛肉下面的电子小工具快速充电,展示了这种发电机为植入式设备供电的潜力。其性能很有吸引力,特别是考虑到该发电机的结构极其简单,仅仅由封装的 M-凝胶组成。该发电机可以从各种超声源中获取能量,从实验室中的超声探头到医院和家庭中用于成像和物理治疗的探头。