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  • IOP Publishing  (3)
  • 1
    Online Resource
    Online Resource
    IOP Publishing ; 2021
    In:  2D Materials Vol. 8, No. 3 ( 2021-07-01), p. 035040-
    In: 2D Materials, IOP Publishing, Vol. 8, No. 3 ( 2021-07-01), p. 035040-
    Abstract: Graphene has been widely used in the form of micro-flakes to fabricate composite materials with enhanced mechanical properties. Due to the small size of the inclusions and their random orientation within the matrix, the superior mechanical properties of graphene cannot be fully exploited. Recently, attempts have been made to fabricate nanolaminate composites by interleaving large sheets of chemical vapor deposition (CVD) monolayer graphene between thin layers of polymer matrices. However, CVD graphene is inevitably accompanied by wrinkles that are formed in the synthesis process, and it remains unknown how the wrinkles affect the mechanical properties of graphene. Here, we employ Brillouin light spectroscopy to study the elastic moduli of CVD graphene by probing graphene/poly(methylmethacrylate) hybrid Bragg stacks at zero strain. We find the Young’s and shear moduli of the CVD graphene, which has wrinkles in the form of sharp elevations with a height of about 6 nm and a fullwidth at half maximum (FWHM) of ca. 30 nm, to be 680 ± 16 and 290 ± 10 GPa, respectively, with the former being about 30% lower than that of exfoliated, flat graphene. This work sheds light on the elastic properties of CVD graphene and provides a method that can be extended to studying the wrinkle-induced softening effect in other two-dimensional materials.
    Type of Medium: Online Resource
    ISSN: 2053-1583
    Language: Unknown
    Publisher: IOP Publishing
    Publication Date: 2021
    detail.hit.zdb_id: 2779376-X
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  • 2
    Online Resource
    Online Resource
    IOP Publishing ; 2001
    In:  Journal of Physics: Condensed Matter Vol. 13, No. 41 ( 2001-10-15), p. R855-R876
    In: Journal of Physics: Condensed Matter, IOP Publishing, Vol. 13, No. 41 ( 2001-10-15), p. R855-R876
    Type of Medium: Online Resource
    ISSN: 0953-8984 , 1361-648X
    Language: Unknown
    Publisher: IOP Publishing
    Publication Date: 2001
    detail.hit.zdb_id: 1472968-4
    detail.hit.zdb_id: 228975-1
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  • 3
    Online Resource
    Online Resource
    IOP Publishing ; 2022
    In:  Journal of Physics D: Applied Physics Vol. 55, No. 19 ( 2022-05-12), p. 193002-
    In: Journal of Physics D: Applied Physics, IOP Publishing, Vol. 55, No. 19 ( 2022-05-12), p. 193002-
    Abstract: Phononic crystals (PnCs) are capable of manipulating the flow of elastic energy through their periodic structures and have emerged as a promising field in the last two decades. Thanks to the advances in microfabrication technologies and developments of multifunctional materials, the engineering of periodic structures moves forward to the nanometer scale. Hence, the relevant frequencies of elastic waves are pushed toward the gigahertz regime where strong photon-phonon interactions trigger the applications of PnCs towards information and communication technologies. In this review, we present the experimental achievements on hypersonic PnCs involving microfabrication technologies to realize the desired structures and characterization of their band structures for unraveling phonon propagation modulation. Some application-oriented research directions are proposed in terms of advances in fabrication and characterization technologies and the development of electro-optomechanical systems.
    Type of Medium: Online Resource
    ISSN: 0022-3727 , 1361-6463
    Language: Unknown
    Publisher: IOP Publishing
    Publication Date: 2022
    detail.hit.zdb_id: 209221-9
    detail.hit.zdb_id: 1472948-9
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