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Proton-enabled activation of peptide materials for biological bimodal memory.


ABSTRACT: The process of memory and learning in biological systems is multimodal, as several kinds of input signals cooperatively determine the weight of information transfer and storage. This study describes a peptide-based platform of materials and devices that can control the coupled conduction of protons and electrons and thus create distinct regions of synapse-like performance depending on the proton activity. We utilized tyrosine-rich peptide-based films and generalized our principles by demonstrating both memristor and synaptic devices. Interestingly, even memristive behavior can be controlled by both voltage and humidity inputs, learning and forgetting process in the device can be initiated and terminated by protons alone in peptide films. We believe that this work can help to understand the mechanism of biological memory and lay a foundation to realize a brain-like device based on ions and electrons.

SUBMITTER: Song MK 

PROVIDER: S-EPMC7677316 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Proton-enabled activation of peptide materials for biological bimodal memory.

Song Min-Kyu MK   Namgung Seok Daniel SD   Choi Daehwan D   Kim Hyeohn H   Seo Hongmin H   Ju Misong M   Lee Yoon Ho YH   Sung Taehoon T   Lee Yoon-Sik YS   Nam Ki Tae KT   Kwon Jang-Yeon JY  

Nature communications 20201119 1


The process of memory and learning in biological systems is multimodal, as several kinds of input signals cooperatively determine the weight of information transfer and storage. This study describes a peptide-based platform of materials and devices that can control the coupled conduction of protons and electrons and thus create distinct regions of synapse-like performance depending on the proton activity. We utilized tyrosine-rich peptide-based films and generalized our principles by demonstrati  ...[more]

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