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Showing 1–5 of 5 results
Advanced filters: Author: Pai-Chun Wei Clear advanced filters
  • The edge of the thin sheets of two dimensional organic-inorganic hybrid perovskite crystals shows exotic physical properties that remain unexplored. Here Cheng et al. make electronic devices and study their transport properties, photoresponses and humid sensitivities which show large anisotropy.

    • Bin Cheng
    • Ting-You Li
    • Jr-Hau He
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-7
  • The semiconductor SnSe hosts a unique multivalley electronic band structure, offering rich physical phenomena for various applications. Especially its excellent thermoelectric properties are ceaselessly under great attention. By employing pressure-dependent infrared spectroscopy combined with density functional theory calculations, the evolution of the multivalley is mapped under external pressure for different self-dopings. The presented diagram summarizes the findings. In lightly doped SnSe, a phase transition from a semiconductor to a semimetal is observed by increasing the pressure. However, for heavily doped SnSe, altering the Fermi surface, successive Lifshitz transitions take place under pressure, further activating the multivalley physics.

    • Tobias Biesner
    • Weiwu Li
    • Martin Dressel
    ResearchOpen Access
    NPG Asia Materials
    Volume: 13, P: 1-7
  • Two-dimensional inorganic–organic hybrid perovskites are expected to play an important role in photovoltaic devices but suffer from issues related to dielectric confinement. The authors theoretically outline a method and experimentally succeed to overcome this issue by using materials with large dielectric constants.

    • Bin Cheng
    • Ting-You Li
    • Jr-Hau He
    ResearchOpen Access
    Communications Physics
    Volume: 1, P: 1-8