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Hybrid molecular graphene transistor as an operando and optoelectronic platform

dc.contributor.authorTrasobares Sánchez, Jorge
dc.contributor.authorMartín-Romano, Juan Carlos
dc.contributor.authorKhaliq, Muhammad Waqas
dc.contributor.authorRuiz Gómez, Sandra
dc.contributor.authorFoerster, Michael
dc.contributor.authorNiño, Miguel Ángel
dc.contributor.authorPedraz, Patricia
dc.contributor.authorDappe, Yannick
dc.contributor.authorCalero De Ory, Marina
dc.contributor.authorGarcía Pérez, Julia
dc.contributor.authorAcebrón, María
dc.contributor.authorRodríguez Osorio, Manuel
dc.contributor.authorMagaz, María Teresa
dc.contributor.authorGomez, Alicia
dc.contributor.authorMiranda, Rodolfo
dc.contributor.authorGranados, Daniel
dc.date.accessioned2023-11-27T19:20:59Z
dc.date.available2023-11-27T19:20:59Z
dc.date.issued2023-03-13
dc.description.abstractLack of reproducibility hampers molecular devices integration into large-scale circuits. Thus, incorporating operando characterization can facilitate the understanding of multiple features producing disparities in different devices. In this work, we report the realization of hybrid molecular graphene field effect transistors (m-GFETs) based on 11-(Ferrocenyl)undecanethiol (FcC11SH) micro self-assembled monolayers (μSAMs) and high-quality graphene (Gr) in a back-gated configuration. On the one hand, Gr enables redox electron transfer, avoids molecular degradation and permits operando spectroscopy. On the other hand, molecular electrode decoration shifts the Gr Dirac point (VDP) to neutrality and generates a photocurrent in the Gr electron conduction regime. Benefitting from this heterogeneous response, the m-GFETs can implement optoelectronic AND/OR logic functions. Our approach represents a step forward in the field of molecular scale electronics with implications in sensing and computing based on sustainable chemicals.
dc.description.departmentDepto. de Biodiversidad, Ecología y Evolución
dc.description.facultyFac. de Ciencias Biológicas
dc.description.refereedTRUE
dc.description.sponsorshipEuropean Commission
dc.description.sponsorshipMinisterio de Asuntos Económicos y Transformación Digital (España)
dc.description.sponsorshipMinisterio de Ciencia, Innovación y Universidades (España)
dc.description.sponsorshipComunidad de Madrid
dc.description.statuspub
dc.identifier.citationTrasobares, J., Martín-Romano, J.C., Khaliq, M.W. et al. Hybrid molecular graphene transistor as an operando and optoelectronic platform. Nat Commun 14, 1381 (2023). https://doi.org/10.1038/s41467-023-36714-7
dc.identifier.doi10.1038/s41467-023-36714-7
dc.identifier.issn2041-1723
dc.identifier.officialurlhttps://doi.org/10.1038/s41467-023-36714-7
dc.identifier.urihttps://hdl.handle.net/20.500.14352/89001
dc.journal.titleNature Communication
dc.language.isoeng
dc.page.final10
dc.page.initial1
dc.publisherNature Research
dc.relation.projectIDHorizon 2020 Marie Skłodowska-Curie COFUND DOC-FAM, subvención n.º 754397
dc.relation.projectIDCEX2020-001039-S
dc.relation.projectID(PID2019-105552RB-C4-1) (ESP2017-92706-EXP, MADE-MICINN: PID2019-105552RB-C44) (PID 2021-122980OB-C54)
dc.relation.projectID(NMAT-2D-P2018/NMT-451) (TEC2SPACE-CM P2018/NMT-4291)
dc.relation.projectID(DEFROST N62909-19-1-2053) (EMPIR-20FUN06-MEMQuD-EURAMET)
dc.rightsAttribution 4.0 Internationalen
dc.rights.accessRightsopen access
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subject.cdu544.15
dc.subject.cdu577.3
dc.subject.cdu544.6
dc.subject.ucmElectrónica (Física)
dc.subject.unesco2406 Biofísica
dc.subject.unesco2210.05 Electroquímica
dc.titleHybrid molecular graphene transistor as an operando and optoelectronic platform
dc.typejournal article
dc.type.hasVersionVoR
dc.volume.number14
dspace.entity.typePublication
relation.isAuthorOfPublication43455356-3ce5-4d19-8811-f5fc04524907
relation.isAuthorOfPublication.latestForDiscovery43455356-3ce5-4d19-8811-f5fc04524907

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