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A cone-shaped 3D carbon nanotube probe for neural recording
Journal article   Peer reviewed

A cone-shaped 3D carbon nanotube probe for neural recording

Huan-Chieh Su, Chia-Min Lin, Shiang-Jie Yen, Yung-Chan Chen, Chang-Hsiao Chen, Shih-Rung Yeh, Weileun Fang, Hsin Chen, Da-Jeng Yao, Yen-Chung Chang, …
Biosensors and Bioelectronics, Vol.26(1), pp.220-227
09/2010

Abstract

Carbon nanotubes Neural probe Neural recording O2 plasma treatment
A novel cone-shaped 3D carbon nanotube (CNT) probe is proposed as an electrode for applications in neural recording. The electrode consists of CNTs synthesized on the cone-shaped Si (cs-Si) tip by catalytic thermal chemical vapor deposition (CVD). This probe exhibits a larger CNT surface area with the same footprint area and higher spatial resolution of neural recording compared to planar-type CNT electrodes. An approach to improve CNT characteristics by O 2 plasma treatment to modify the CNT surface will be also presented. Electrochemical characterization of O 2 plasma-treated 3D CNT (OT-CNT) probes revealed low impedance per unit area (∼64.5Ωmm -2 ) at 1kHz and high specific capacitance per unit area (∼2.5mFcm -2 ). Furthermore, the OT-CNT probes were employed to record the neural signals of a crayfish nerve cord. Our findings suggest that OT-CNT probes have potential advantages as high spatial resolution and superb electrochemical properties which are suitable for neural recording applications. © 2010 Elsevier B.V.

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