• [口頭報告]Hydrothermal synthesis and dielectric responses of sillenite Bi25FeO39 microcrystals with hierarchical microstructures
    00
    days
    00
    hours
    00
    minutes
    00
    seconds
    00
    days
    00
    hours
    00
    minutes
    00
    seconds

    [口頭報告]Hydrothermal synthesis and dielectric responses of sillenite Bi25FeO39 microcrystals with hierarchical microstructures

    Hydrothermal synthesis and dielectric responses of sillenite Bi25FeO39 microcrystals with hierarchical microstructures
    編號:21 稿件編號:272 訪問權限:僅限參會人 更新:2024-05-21 11:56:08 瀏覽:182次 口頭報告

    報告開始:2024年05月30日 19:50 (Asia/Shanghai)

    報告時間:10min

    所在會議:[S7] Minerals and Advanced Energy Materials ? [S7-2] Evening of May 30th

    暫無文件

    摘要
    Sillenite Bi25FeO39 particles have drawn considerable interest due to their high performance in photocatalytic, dielectric and humidity sensing fields. However, their synthetic processes especially the approach to modulate their shapes and sizes have not been described explicitly. In this paper, a facile hydrothermal route to prepare dispersed Bi25FeO39 microcrystals is provided. By changing the ratio of Bi3+: Fe3+ from 1:1 to 2:1 in aqueous solution, the as-prepared Bi25FeO39 microcrystals are categorized from tetrahedral to cubic series. Further tailoring on processing parameters such as pH value, temperature and reaction time results in various hierarchical micro-nanostructures. The compositions, morphologies and growth evolution of the as-prepared Bi25FeO39 are discussed. The dielectric and ferroelectric properties were tested and compared. The results show that Bi25FeO39 has obvious relaxation characteristics, and is more suitable for applications in the temperature range from room temperature to 200 °C above 105 Hz, where the dielectric constant can be kept around 150 and the dielectric loss is as low as 0.2; the maximum polarisation strength of the ferroelectric performance test further verifies the dielectric test results, and the strongest ferroelectricity was measured for the BFO-C2, and the cubic system of the BFO-C1 and BFO-C2 have the largest coercive electric field, indicating that the cubic series requires a larger electric field to drive the domain flip than the tetrahedral series of BFO; the maximum polarisation strength and smaller residual polarisation strength of BFO-T3 make it possible to be used in the field of energy storage capacitors in the future.
     
    關鍵字
    Bismuth ferrite; Hydrothermal processes; Hierarchical nanostructures; Dielectric properties
    報告人
    Zhimin Fu
    China University of Mining and Technology

    稿件作者
    含卓 張 中國礦業大學
    志民 付 中國礦業大學材料與物理學院
    康 雍 中國礦業大學
    超甫 張 中國礦業大學
    發表評論
    驗證碼 看不清楚,更換一張
    全部評論

    聯系我們

    投稿事宜:張老師
    電話:0516-83995113
    會務事宜:張老師
    電話:0516-83590258
    酒店事宜:張老師
    電話:15852197548
    會展合作:李老師
    電話:0516-83590246
    登錄 注冊繳費 提交摘要 酒店預訂
  • 成人视频