Realization of a diamond based high density multi electrode array by means of deep ion beam lithography
arXiv:1412.2212 · doi:10.1016/j.nimb.2014.11.119
Abstract
In the present work we report about a parallel-processing ion beam fabrication technique whereby high-density sub-superficial graphitic microstructures can be created in diamond. Ion beam implantation is an effective tool for the structural modification of diamond: in particular ion-damaged diamond can be converted into graphite, therefore obtaining an electrically conductive phase embedded in an optically transparent and highly insulating matrix. The proposed fabrication process consists in the combination of Deep Ion Beam Lithography (DIBL) and Focused Ion Beam (FIB) milling. FIB micromachining is employed to define micro-apertures in the contact masks consisting of thin (<10 um) deposited metal layers through which ions are implanted in the sample. A prototypical single-cell biosensor was realized with the above described technique. The biosensor has 16 independent electrodes converging inside a circular area of 20 um diameter (typical neuroendocrine cells size) for the simultaneous recording of amperometric signals.
References in corpus (5)
- Characterization of Three-Dimensional Microstructures in Single Crystal Diamond
- Evidence of light guiding in ion-implanted diamond
- Direct fabrication of three-dimensional buried conductive channels in single crystal diamond with ion microbeam induced graphitization
- Focused ion beam fabrication and IBIC characterization of a diamond detector with buried electrodes
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Cited by in corpus (8)
- Electrical control of deep NV centers in diamond by means of sub-superficial graphitic micro-electrodes
- Microelectrode arrays of diamond-insulated graphitic channels for real time detection of exocytotic events from cultured chromaffin cells and slices of adrenal glands
- Electrical stimulation of single-photon emission from nitrogen-vacancy centers in diamond with sub-superficial graphitic electrodes
- Mapping the local spatial charge in defective diamond by means of NV sensors - A "self-diagnostic" concept
- Effects of high-power laser irradiation on sub-superficial graphitic layers in single crystal diamond
- Kelvin probe characterization of buried graphitic microchannels in single-crystal diamond
- Enhancing the Study of Quantal Exocytotic Events: Combining Diamond Multi-Electrode Arrays with Amperometric PEak Analysis (APE) an Automated Analysis Code
- Electroluminescence from nitrogen-vacancy and interstitial-related centers in bulk diamond stimulated by ion-beam-fabricated sub-superficial graphitic micro-electrodes