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  1. No Access

    Article

    Optimizing yellow fluorescence in Dy3+:SrF2 crystal through Gd3+ co-do**

    A high-quality Dy3+/Gd3+: SrF2 single crystal has been grown successfully by the Bridgman method. The spectroscopic properties of the crystal have been analyzed in detail following the absorption, emission, and d...

    Haidong Wang, **angqi Gao, Yan Wang in Journal of Materials Science: Materials in… (2023)

  2. Article

    Open Access

    Biodegradable germanium electronics for integrated biosensing of physiological signals

    Transient electronics that can disappear or degrade via physical disintegration or chemical reaction over a pre-defined operational period provide essential for their applications in implantable bioelectronics...

    Haonan Zhao, Zhongying Xue, **aozhong Wu, Zhihuan Wei in npj Flexible Electronics (2022)

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    Article

    Material strategies for on-demand smart transient electronics

    Emerging transient electronics capable of complete physical and chemical disintegration are derived from advanced materials and device design strategies. The area of exploring on-demand smart transient electro...

    Chunyu You, Haonan Zhao, Qinglei Guo, Yongfeng Mei in MRS Bulletin (2020)

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    Article

    Study of Crystal Yb3+:Ca3Y2(BO3)4

    Yb3+-doped single-crystal Ca3Y2(BO3)4 with dimension φ20 × 55 mm was grown by the Czochralski method. The structure of it was determined by x-ray diffraction. It belongs to the orthorhombic system, space group Pn...

    Yan Wang, Chaoyang Tu, Changcang Huang, Zhenyu You in Journal of Materials Research (2004)