122 research outputs found

    Diffusion Mechanism of Lithium Ion through Basal Plane of Layered Graphene

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    International audienceCoexistence of both edge plane and basal plane in graphite often hinders the understanding of lithium ion diļ¬€usion mechanism. In this report, two types of graphene samples were prepared by chemical vapor deposition (CVD): (i) well-deļ¬ned basal plane graphene grown on Cu foil and (ii) edge plane-enriched graphene layers grown on Ni ļ¬lm. Electrochemical performance of the graphene electrode can be split into two regimes depending on the number of graphene layers: (i) the corrosion-dominant regime and (ii) the lithiation-dominant regime. Li ion diļ¬€usion perpendicular to the basal plane of graphene is facilitated by defects, whereas diļ¬€usion parallel to the plane is limited by the steric hindrance that originates from aggregated Li ions adsorbed on the abundant defect sites. The critical layer thickness (lc) to eļ¬€ectively prohibit substrate reaction using CVD-grown graphene layers was predicted to be āˆ¼6 layers, independent of defect population. Our density functional theory calculations demonstrate that divacancies and higher order defects have reasonable diļ¬€usion barrier heights allowing lithium diļ¬€usion through the basal plane but neither monovacancies nor Stone-Wales defect

    Single-mode fiber multiterminal directional coupler/tapped delay line

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    Propagation characteristics of single-mode evanescent field couplers

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    Passive fiber optic gyroscope

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    OBSERVATION OP LOW NOISE IN A PASSIVE FIBER GYROSCOPE

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