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Showing 1–8 of 8 results
Advanced filters: Author: Ya-Qing Bie Clear advanced filters
  • Understanding of electrolyte-electrode interfaces is limited due to the lack of suitable probing techniques. Here, the authors present a vibrational spectroscopy based on graphene gratings, which enables sensitive and interface-specific detection of molecular vibrations at electrolyte-electrode interfaces.

    • Ya-Qing Bie
    • Jason Horng
    • Feng Wang
    ResearchOpen Access
    Nature Communications
    Volume: 6, P: 1-6
  • Vertically assembled graphene devices have received less attention than the typical two dimensional arrangements. Chen et al. show that an Au/graphene/Au assembly exhibits a large magnetoresistance ratio of up to 400%, while a Co/graphene/Co device displays a spin valve effect at room temperature.

    • Jing-Jing Chen
    • Jie Meng
    • Da-Peng Yu
    Research
    Nature Communications
    Volume: 4, P: 1-7
  • A single field-enhanced terahertz pulse was used to create 1\({T}^{{\prime} }\)-MoTe2 out of few-layer H-MoTe2 crystals, providing insights into the ultrafast polymorphic transition dynamics and resolving a long-standing debate over the realization of this transition by high-energy photon irradiation.

    • Jiaojian Shi
    • Ya-Qing Bie
    • Keith A. Nelson
    ResearchOpen Access
    Nature Communications
    Volume: 14, P: 1-8
  • Berry curvature, which features in the imaginary part of the quantum geometry, is now well known for driving non-linear responses in Weyl semimetals. Here, Yu et al. show how the real component of the quantum geometry, the quantum metric, leads to a room temperature third order non-linear hall effect in Fe5GeTe2.

    • Hao Yu
    • Xinjie Li
    • Guowei Yang
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-10
  • Short pulses of light shift the balance between two competing charge density wave phases, allowing the weaker one to manifest transiently while suppressing the stronger one. This shows that competing phases can be tuned in a non-equilibrium setting.

    • Anshul Kogar
    • Alfred Zong
    • Nuh Gedik
    Research
    Nature Physics
    Volume: 16, P: 159-163
  • Three different ultrafast probes investigate a non-adiabatic phase transition and find substantial evidence of topological defects inhibiting the reformation of the equilibrium phase.

    • Alfred Zong
    • Anshul Kogar
    • Nuh Gedik
    Research
    Nature Physics
    Volume: 15, P: 27-31