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Article

Stretchable and Transparent Metal Nanowire Microelectrodes for Simultaneous Electrophysiology and Optogenetics Applications

Department of Biomedical Engineering, The George Washington University, Washington, DC 20052, USA
*
Author to whom correspondence should be addressed.
Photonics 2021, 8(6), 220; https://doi.org/10.3390/photonics8060220
Submission received: 23 May 2021 / Revised: 10 June 2021 / Accepted: 10 June 2021 / Published: 15 June 2021
(This article belongs to the Special Issue Bio-Integrated Photonic Materials and Devices)

Abstract

Recently developed optically transparent microelectrode technology provides a promising approach for simultaneous high-resolution electrical and optical biointerfacing with tissues in vivo and in vitro. A critically unmet need is designing high-performance stretchable platforms for conformal biointerfacing with mechanically active organs. Here, we report silver nanowire (Ag NW) stretchable transparent microelectrodes and interconnects that exhibit excellent electrical and electrochemical performance, high optical transparency, superior mechanical robustness and durability by a simple selective-patterning process. The fabrication method allows the direct integration of Ag NW networks on elastomeric substrates. The resulting Ag NW interface exhibits a low sheet resistance (Rsh) of 1.52–4.35 Ω sq−1, an advantageous normalized electrochemical impedance of 3.78–6.04 Ω cm2, a high optical transparency of 61.3–80.5% at 550 nm and a stretchability of 40%. The microelectrode arrays (MEAs) fabricated with this approach exhibit uniform electrochemical performance across all channels. Studies on mice demonstrate that both pristine and stretched Ag NW microelectrodes can achieve high-fidelity electrophysiological monitoring of cardiac activity with/without co-localized optogenetic pacing. Together, these results pave the way for developing stretchable and transparent metal nanowire networks for high-resolution opto-electric biointerfacing with mechanically active organs, such as the heart.
Keywords: stretchable; transparent microelectrodes; nanowire; electrophysiology; optogenetics stretchable; transparent microelectrodes; nanowire; electrophysiology; optogenetics

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MDPI and ACS Style

Tian, J.; Lin, Z.; Chen, Z.; Obaid, S.N.; Efimov, I.R.; Lu, L. Stretchable and Transparent Metal Nanowire Microelectrodes for Simultaneous Electrophysiology and Optogenetics Applications. Photonics 2021, 8, 220. https://doi.org/10.3390/photonics8060220

AMA Style

Tian J, Lin Z, Chen Z, Obaid SN, Efimov IR, Lu L. Stretchable and Transparent Metal Nanowire Microelectrodes for Simultaneous Electrophysiology and Optogenetics Applications. Photonics. 2021; 8(6):220. https://doi.org/10.3390/photonics8060220

Chicago/Turabian Style

Tian, Jinbi, Zexu Lin, Zhiyuan Chen, Sofian N. Obaid, Igor R. Efimov, and Luyao Lu. 2021. "Stretchable and Transparent Metal Nanowire Microelectrodes for Simultaneous Electrophysiology and Optogenetics Applications" Photonics 8, no. 6: 220. https://doi.org/10.3390/photonics8060220

APA Style

Tian, J., Lin, Z., Chen, Z., Obaid, S. N., Efimov, I. R., & Lu, L. (2021). Stretchable and Transparent Metal Nanowire Microelectrodes for Simultaneous Electrophysiology and Optogenetics Applications. Photonics, 8(6), 220. https://doi.org/10.3390/photonics8060220

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