Dr Thomas Draper Tom.Draper@uwe.ac.uk
Research Fellow in Biosensing/ Healthcare Technology
Dr Thomas Draper Tom.Draper@uwe.ac.uk
Research Fellow in Biosensing/ Healthcare Technology
Claire Fullarton
Dr Neil Phillips Neil.Phillips@uwe.ac.uk
Research Fellow in Fungal Analog Electronics
Benjamin De Lacy Costello Ben.DeLacyCostello@uwe.ac.uk
Associate Professor in Diagnostics and Bio-Sensing Technology
Andrew Adamatzky Andrew.Adamatzky@uwe.ac.uk
Professor
© 2017 Elsevier Ltd Liquid marbles are microliter droplets of liquid, encapsulated by self-organized hydrophobic particles at the liquid/air interface. They offer an efficient approach for manipulating liquid droplets and compartmentalizing reactions in droplets. Digital fluidic devices employing liquid marbles might benefit from having embedded computing circuits without electronics and moving mechanical parts (apart from the marbles). We present an experimental implementation of a collision gate with liquid marbles. Mechanics of the gate follows principles of Margolus’ soft-sphere collision gate. Boolean values of the inputs are given by the absence (FALSE) or presence (TRUE) of a liquid marble. There are three outputs: two outputs are trajectories of undisturbed marbles (they only report TRUE when just one marble is present at one of the inputs), one output is represented by trajectories of colliding marbles (when two marbles collide they lose their horizontal momentum and fall), this output reports TRUE only when two marbles are present at inputs. Thus the gate implements AND and AND-NOT logical functions. We speculate that by merging trajectories representing AND-NOT output into a single channel one can produce a one-bit half-adder. Potential design of a one-bit full-adder is discussed, and the synthesis of both a pure nickel metal and a hybrid nickel/polymer liquid marble is reported.
Journal Article Type | Article |
---|---|
Acceptance Date | Sep 13, 2017 |
Publication Date | Dec 1, 2017 |
Deposit Date | Jan 18, 2018 |
Publicly Available Date | Nov 14, 2018 |
Journal | Materials Today |
Print ISSN | 1369-7021 |
Electronic ISSN | 1369-7021 |
Publisher | Elsevier |
Peer Reviewed | Peer Reviewed |
Volume | 20 |
Issue | 10 |
Pages | 561-568 |
DOI | https://doi.org/10.1016/j.mattod.2017.09.004 |
Keywords | liquid marble, unconventional computing, collision computing, adder, logic gate, microfluidic |
Public URL | https://uwe-repository.worktribe.com/output/901751 |
Publisher URL | http://dx.doi.org/10.1016/j.mattod.2017.09.004 |
Contract Date | Jan 18, 2018 |
Liquid Marble Interaction Gate (small) - accepted.pdf
(455 Kb)
PDF
Learning in colloids: Synapse-like ZnO + DMSO colloid
(2023)
Journal Article
Author correction: Kombucha electronics: Electronic circuits on kombucha mats
(2023)
Journal Article
Kombucha electronics: Electronic circuits on kombucha mats
(2023)
Journal Article
Propagation of electrical signals by fungi
(2023)
Journal Article
Transfer functions of proteinoid microspheres
(2023)
Journal Article
About UWE Bristol Research Repository
Administrator e-mail: repository@uwe.ac.uk
This application uses the following open-source libraries:
Apache License Version 2.0 (http://www.apache.org/licenses/)
Apache License Version 2.0 (http://www.apache.org/licenses/)
SIL OFL 1.1 (http://scripts.sil.org/OFL)
MIT License (http://opensource.org/licenses/mit-license.html)
CC BY 3.0 ( http://creativecommons.org/licenses/by/3.0/)
Powered by Worktribe © 2025
Advanced Search