Design and fabrication of autonomous electronic lablets for chemical control

Fuente: arXiv
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Main Authors: McCaskill, John S., Maeke, Thomas, Funke, Dominic, Mayr, Pierre, Sharma, Abhishek, Wagler, Patrick F., Oehm, Jürgen
Format: Preprint
Published: 2024
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_version_ 1866909212837150720
author McCaskill, John S.
Maeke, Thomas
Funke, Dominic
Mayr, Pierre
Sharma, Abhishek
Wagler, Patrick F.
Oehm, Jürgen
author_facet McCaskill, John S.
Maeke, Thomas
Funke, Dominic
Mayr, Pierre
Sharma, Abhishek
Wagler, Patrick F.
Oehm, Jürgen
contents Lablets are autonomous microscopic particles with programmable CMOS electronics that canvcontrol electrokinetic phenomena and electrochemical reactions in solution via actuator and sensor microelectrodes. The lablets are designed to be rechargeable using an integrated supercapacitor, and to allow docking to one another or to a smart surface for interchange of energy, electronic information and chemicals. In this paper, we describe the design and fabrication of singulated lablets (CMOS2) at the scale of 100 by 200 μm, with the supercap adjacent to the functional lablet and occupying half the space. In other works, we have characterized the supercap and described the electronic design and proven functionality using arrays of these lablets. Here we present fabrication details for integrating functional coatings and the supercap and demonstrate electronic functionality of the lablets following singulation.
format Preprint
id arxiv_https___arxiv_org_abs_2405_15608
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Design and fabrication of autonomous electronic lablets for chemical control
McCaskill, John S.
Maeke, Thomas
Funke, Dominic
Mayr, Pierre
Sharma, Abhishek
Wagler, Patrick F.
Oehm, Jürgen
Robotics
Materials Science
I.2.9; B.7.0; J.2; J.3; J.7; H.0
Lablets are autonomous microscopic particles with programmable CMOS electronics that canvcontrol electrokinetic phenomena and electrochemical reactions in solution via actuator and sensor microelectrodes. The lablets are designed to be rechargeable using an integrated supercapacitor, and to allow docking to one another or to a smart surface for interchange of energy, electronic information and chemicals. In this paper, we describe the design and fabrication of singulated lablets (CMOS2) at the scale of 100 by 200 μm, with the supercap adjacent to the functional lablet and occupying half the space. In other works, we have characterized the supercap and described the electronic design and proven functionality using arrays of these lablets. Here we present fabrication details for integrating functional coatings and the supercap and demonstrate electronic functionality of the lablets following singulation.
title Design and fabrication of autonomous electronic lablets for chemical control
topic Robotics
Materials Science
I.2.9; B.7.0; J.2; J.3; J.7; H.0
url https://arxiv.org/abs/2405.15608