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Optogenetic brain neuromodulation by stray magnetic field via flash-enhanced magneto-mechano-triboelectric nanogenerator

Authors
Lee, Han EolPark, Jung HwanJang, DaheeShin, Jung HoIm, Tae HongLee, Jae HeeHong, Seong KwangWang, Hee SeungKwak, Min SubPeddigari, MaheshJeong, Chang KyuMin, YuhoPark, Chan HeeChoi, Jong-JinRyu, JunghoYoon, Woon-HaKim, DaesooLee, Keon JaeHwang, Geon-Tae
Issue Date
Sep-2020
Publisher
ELSEVIER
Keywords
Energy harvester; Flash annealing; Magneto-mechano-triboelectric nanogenerator; Flexible micro LED; Optogenetics
Citation
NANO ENERGY, v.75
Journal Title
NANO ENERGY
Volume
75
URI
https://scholarworks.bwise.kr/kumoh/handle/2020.sw.kumoh/28332
DOI
10.1016/j.nanoen.2020.104951
ISSN
2211-2855
2211-3282
Abstract
Optogenetic neuromodulation is a promising technology for continuously caring various neurological diseases. Optogenetic modulating systems were demonstrated by several researchers, but still have critical issues of short lifetime of conventional or biocompatible batteries. Here, we present an optogenetic stimulating system by scavenging wasted magnetic field of home appliance. A flash-enhanced magneto-mechano-triboelectric nanogenerator (MMTENG) was fabricated to demonstrate optogenetic neuromodulation by operating a flexible micro light-emitting diode (f-mu LED). The output performance of MMTENG was enhanced by the flash-induced nano/microscale surface structure of the triboelectric Nylon film. The flash-stamped MMTENG effectively generated an open-circuit peak-to-peak voltage (V-pp) of 870 V and a short-circuit current of 145 mu A under a gentle alternating current (AC) magnetic field of 7 Oe. A maximum peak power of 8.1 mW was observed from the flash-induced harvester, which was 2.6 times higher than the non-treated device. A high-performance f-mu LED with low-resistive ohmic contacts had the improvement of thermal/mechanical stability as well as power efficiency. The MMTENG generated a rectified output voltage of 134 V by a 60 Hz stray magnetic field of home appliance, enabling to operate the f-mu LED continuously. An optogenetic stimulator composed of MMTENG and f-mu LED was implanted under a living mouse skull without mechanical damage.
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