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  4. A Single Magnetic Particle with Nearly Unlimited Encoding Options
 
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2021
Journal Article
Titel

A Single Magnetic Particle with Nearly Unlimited Encoding Options

Abstract
Communicating objects are demanded for product security and the concepts of a circular economy or the Internet of Nano Things. Smart additives in the form of particles can be the key to equip objects with the desired materials intelligence as their miniaturized size improves applicability and security. Beyond their proposed identification by optical signals, magnetic signals deriving from magnetic particles can hypothetically be used for identification but are to date only resolved roughly. Herein, a magnetic particle-based toolbox is reported, that provides more than 77 billion (77 × 109) different magnetic codes, adjustable in one single particle, that can be read out unambiguously, easily, and quickly. The key towards achieving the vast code variety is a hierarchical supraparticle design that is inspired by music: similarly to how the line-up variation of a musical ensemble yields distinguishable overtones, the variation of the supraparticle composition alters their magnetic overtones. By minimizing magnetic interactions, customizable signals are spectrally decoded by the simple method of magnetic particle spectroscopy. A large number of chemically adjustable magnetic codes and the possibility of their remote, contactless detection from within materials is a breakthrough for unexploited labeling applications and pave the way towards materials intelligence.
Author(s)
Müssig, Stephan
Department of Chemistry and Pharmacy Friedrich-Alexander University Erlangen-Nürnberg (FAU) Erlangen, Germany
Reichstein, Jakob
Department of Chemistry and Pharmacy Friedrich-Alexander University Erlangen-Nürnberg (FAU) Erlangen, Germany
Prieschl, Johannes
Department of Chemistry and Pharmacy Friedrich-Alexander University Erlangen-Nürnberg (FAU) Erlangen, Germany
Wintzheimer, Susanne
Department of Chemistry and Pharmacy Friedrich-Alexander University Erlangen-Nürnberg (FAU) Erlangen, Germany; Particle Technology Fraunhofer-Institute for Silicate Research ISC Würzburg, Germany
Mandel, Karl
Department of Chemistry and Pharmacy Friedrich-Alexander University Erlangen-Nürnberg (FAU) Erlangen, Germany
Zeitschrift
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DOI
10.1002/smll.202101588
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Language
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Fraunhofer-Institut für Silicatforschung ISC
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  • identification

  • magnetic supraparticl...

  • markers

  • tracer

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