Please use this identifier to cite or link to this item:
https://hdl.handle.net/10356/171075
Title: | Automated pipetting robot for proxy high-throughput viscometry of Newtonian fluids | Authors: | Soh, Beatrice W. Chitre, Aniket Lee, Wen Yang Bash, Daniil Kumar, Jatin N. Hippalgaonkar, Kedar |
Keywords: | Engineering::Materials | Issue Date: | 2023 | Source: | Soh, B. W., Chitre, A., Lee, W. Y., Bash, D., Kumar, J. N. & Hippalgaonkar, K. (2023). Automated pipetting robot for proxy high-throughput viscometry of Newtonian fluids. Digital Discovery, 2(2), 481-488. https://dx.doi.org/10.1039/d2dd00126h | Project: | A1898b0043 NRF-NRFF13-2021-0011 |
Journal: | Digital Discovery | Abstract: | In this work, we develop a high-throughput viscometer for Newtonian fluids with viscosities between 1500 and 12 000 cP. The viscometer is developed based on an automated pipetting robot Opentrons (OT-2), with a commercial wide bore tip. The measurement protocol exploits the known characteristics of air-displacement pipettes in dispensing and gravimetrically measuring fluids of different viscosities. Specifically, by measuring the actual dispense flow rate of fluids with varying viscosities under fixed dispense conditions, we construct a calibration curve and propose a scaling analysis based on flow through an idealized pipette tip geometry. Our model can predict the viscosity of Newtonian fluids with an error of 6.5%. We also showcase the flexibility of our platform by integrating a custom-design tip for a different viscosity range. | URI: | https://hdl.handle.net/10356/171075 | ISSN: | 2635-098X | DOI: | 10.1039/d2dd00126h | Schools: | School of Materials Science and Engineering | Organisations: | Institute of Materials Research and Engineering, A*STAR | Rights: | © 2023 The Author(s). Published by the Royal Society of Chemistry. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. | Fulltext Permission: | open | Fulltext Availability: | With Fulltext |
Appears in Collections: | MSE Journal Articles |
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d2dd00126h.pdf | 1.66 MB | Adobe PDF | ![]() View/Open |
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