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Storing and Reading Information in Mixtures of Fluorescent Molecules

Authors :
Brian J. Cafferty
Milan Mrksich
Alexei S. Ten
Amit A. Nagarkar
Douglas S. Richardson
George M. Whitesides
Michael J. Fink
Samuel E. Root
Source :
ACS Central Science, Vol 7, Iss 10, Pp 1728-1735 (2021), ACS Central Science
Publication Year :
2021
Publisher :
American Chemical Society, 2021.

Abstract

The rapidly increasing use of digital technologies requires the rethinking of methods to store data. This work shows that digital data can be stored in mixtures of fluorescent dye molecules, which are deposited on a surface by inkjet printing, where an amide bond tethers the dye molecules to the surface. A microscope equipped with a multichannel fluorescence detector distinguishes individual dyes in the mixture. The presence or absence of these molecules in the mixture encodes binary information (i.e., “0” or “1”). The use of mixtures of molecules, instead of sequence-defined macromolecules, minimizes the time and difficulty of synthesis and eliminates the requirement of sequencing. We have written, stored, and read a total of approximately 400 kilobits (both text and images) with greater than 99% recovery of information, written at an average rate of 128 bits/s (16 bytes/s) and read at a rate of 469 bits/s (58.6 bytes/s).<br />Digital data can be stored in mixtures of fluorescent dye molecules tethered to a polymeric surface. Inkjet printing of small molecules coupled with fluorescence output can store and read the data.

Details

Language :
English
ISSN :
23747951
Volume :
7
Issue :
10
Database :
OpenAIRE
Journal :
ACS Central Science
Accession number :
edsair.doi.dedup.....d4a0b22e3745d1fc1f3258312fc6f0cd