Mechanism of Fluorescence Enhancement of Biosynthesized XFe2O4–BiFeO3 (X = Cr, Mn, Co, or Ni) Membranes

نویسندگان

  • Liang Bian
  • Hai-long Li
  • Hai-liang Dong
  • Fa-qin Dong
  • Mian-xin Song
  • Li-sheng Wang
  • Wen-ping Hou
  • Lei Gao
  • Xiao-yan Zhang
  • Tian-liang Zhou
  • Guang-ai Sun
  • Xin-xi Li
  • Lei Xie
چکیده

Ferrites-bismuth ferrite is an intriguing option for medical diagnostic imaging device due to its magnetoelectric and enhanced near-infrared fluorescent properties. However, the embedded XFO nanoparticles are randomly located on the BFO membranes, making implementation in devices difficult. To overcome this, we present a facile bio-approach to produce XFe2O4-BiFeO3 (XFO-BFO) (X = Cr, Mn, Co, or Ni) membranes using Shewanella oneidensis MR-1. The perovskite BFO enhances the fluorescence intensity (at 660 and 832 nm) and surface potential difference (-469 ~ 385 meV and -80 ~ 525 meV) of the embedded spinel XFO. This mechanism is attributed to the interfacial coupling of the X-Fe (e- or h+) and O-O (h+) interfaces. Such a system could open up new ideas in the design of environmentally friendly fluorescent membranes.

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عنوان ژورنال:

دوره 11  شماره 

صفحات  -

تاریخ انتشار 2016