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Unveiling the anisotropy and mechanism of magnetic alignment of graphene in polymer composites for efficient absorption of THz radiations (0.3–3.0 THz)

dc.contributor.authorGovindaraj, Pen_AU
dc.contributor.authorVarghese, Sen_AU
dc.contributor.authorSokolova, AVen_AU
dc.contributor.authorHan, MLen_AU
dc.contributor.authorJuodkazis, Sen_AU
dc.contributor.authorAppadoo, Den_AU
dc.contributor.authorFuss, FKen_AU
dc.contributor.authorSalim, NVen_AU
dc.contributor.authorHameed, Nen_AU
dc.date.accessioned2026-09-03T01:17:02Zen_AU
dc.date.issued2025-11-01en_AU
dc.date.statistics2025-08-21en_AU
dc.description.abstractFlexible polymer films containing highly aligned graphene flakes were designed using low magnetic field for Terahertz (THz) shielding applications. The alignment of graphene resulted in a unique dark-bright field macroscopic patterns on the cured composite films. On a microscopic scale, the alignment of graphene resulted in a distinctive chain-like structure that favour an effective electron flow path resulting in an electron mobility and optimal electrical conductivity of 7.2 cm2/Vs and 3.3 x 10−7 S/cm, respectively, which is extremely higher than the homogenous composite for the lowest graphene loading of 1 wt%. For the first time, an aligned composite film of 100 μm thickness was characterised using the synchrotron beam in the THz regime – 0.3 to 3.0 THz and exhibited an exceptionally high absorptance of 56.6 % of T-rays for 1 wt% graphene concentration. Simultaneously, the mechanism of orientation and the in-situ alignment of graphene in the magnetic field was characterised using the time-of-flight small angle neutron scattering technique and their probability of alignment, anisotropy factor were estimated. The in-situ neutron experiments indicate that when the applied magnetic field is perpendicular to the wave vector of the incoming neutron beam, a pronounced anisotropy is observed in the total unpolarized beam due to the alignment of graphene flakes. The exploration of magnetic alignment of graphene and determination of optical anisotropy lays foundation for further discovery of aligned graphene-based composite. The outstanding performance and high efficiency of aligned graphene composites present a huge potential in THz devices, polarization control and shielding solutions for T-rays. © 2025 The Authors. Published by Elsevier Ltd. Open Access CC BY 4.0.en_AU
dc.description.sponsorshipAuthor PG would also like to acknowledge the Swinburne University Postgraduate Research Awards research grant and thank AINSE Limited for providing financial assistance (PGRA - ALNSTU12654). This research was undertaken on the Bilby – time-of-flight small angle neutron scattering instrument (Proposal number - DB9588, In-situ SANS analysis of magnetic field induced orientation of graphene flakes in polymer dispersions at different temperatures) at ANSTO and THz-Far IR beamline (Proposal number - 17675, 17675b, Terahertz (THz) conductivity of graphene composite films with random and aligned morphology) at Australian Synchrotron. The authors would like to thank the Australian Research Council for the ARC Linkage Project (LP200301659) research grant.en_AU
dc.identifier.articlenumber112739en_AU
dc.identifier.citationGovindaraj, P., Varghese, S., Sokolova, A., Han, M., Juodkazis, S., Appadoo, D., Fuss, F. K., Salim, N., & Hameed, N. (2025). Unveiling the anisotropy and mechanism of magnetic alignment of graphene in polymer composites for efficient absorption of THz radiations (0.3–3.0 THz). Composites Part B: Engineering, 306, 112739. doi:10.1016/j.compositesb.2025.112739en_AU
dc.identifier.issn1359-8368en_AU
dc.identifier.journaltitleComposites Part B Engineeringen_AU
dc.identifier.urihttps://doi.org/10.1016/j.compositesb.2025.112739en_AU
dc.identifier.urihttps://apo.ansto.gov.au/handle/10238/17354en_AU
dc.identifier.volume306en_AU
dc.languageEnglishen_AU
dc.language.isoenen_AU
dc.publisherElsevieren_AU
dc.subjectPolymersen_AU
dc.subjectGrapheneen_AU
dc.subjectAbsorptionen_AU
dc.subjectRadiationsen_AU
dc.subjectMagnetismen_AU
dc.subjectAnisotropyen_AU
dc.subjectNeutron diffractionen_AU
dc.subjectFilmsen_AU
dc.subjectMagnetic fieldsen_AU
dc.subjectPolarizationen_AU
dc.subjectPolyvinylsen_AU
dc.subjectTHz rangeen_AU
dc.subjectSpectroscopyen_AU
dc.titleUnveiling the anisotropy and mechanism of magnetic alignment of graphene in polymer composites for efficient absorption of THz radiations (0.3–3.0 THz)en_AU
dc.typeJournal Articleen_AU

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