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  4. Photophysical properties and fluorescence lifetime imaging of exfoliated near-infrared fluorescent silicate nanosheets
 
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2021
Journal Article
Title

Photophysical properties and fluorescence lifetime imaging of exfoliated near-infrared fluorescent silicate nanosheets

Abstract
The layered silicates Egyptian Blue (CaCuSi4O10, EB), Han Blue (BaCuSi4O10, HB) and Han Purple (BaCuSi2O6, HP) emit as bulk materials bright and stable fluorescence in the near-infrared (NIR), which is of high interest for (bio)photonics due to minimal scattering, absorption and phototoxicity in this spectral range. So far the optical properties of nanosheets (NS) of these silicates are poorly understood. Here, we exfoliate them into monodisperse nanosheets, report their physicochemical properties and use them for (bio)photonics. The approach uses ball milling followed by tip sonication and centrifugation steps to exfoliate the silicates into NS with lateral size and thickness down to ≈ 16-27 nm and 1-4 nm, respectively. They emit at ≈ 927 nm (EB-NS), 953 nm (HB-NS) and 924 nm (HP-NS), and single NS can be imaged in the NIR. The fluorescence lifetimes decrease from ≈ 30-100 ms (bulk) to 17 ms (EB-NS), 8 ms (HB-NS) and 7 ms (HP-NS), thus enabling lifetime-encoded multicolor imaging both on the microscopic and the macroscopic scale. Finally, remote imaging through tissue phantoms reveals the potential for bioimaging. In summary, we report a procedure to gain monodisperse NIR fluorescent silicate nanosheets, determine their size-dependent photophysical properties and showcase the potential for NIR photonics.
Author(s)
Selvaggio, Gabriele
Weitzel, Milan
Uni Göttingen / IPC
Oleksiievets, Nazar
Uni Göttingen / 3. Physikalisches Institut
Oswald, Tabea A.
Uni Göttinen (Institut für Organische und Biomolekulare Chemie)
Nißler, Robert
Uni Göttingen / IPC ; Uni Bochum / Phys. Chemie II
Mey, Ingo
Uni Göttingen / IOBC
Karius, Volker
Uni Göttingen / GZG / Sedimentologie
Enderlein, Jörg
Uni Göttingen / 3. Physikalisches Institut
Tsukanov, Roman
Uni Göttingen / 3. Physikalisches Institut
Kruss, Sebastian
Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme IMS  
Journal
Nanoscale advances  
Project(s)
RESOLV
Funder
Deutsche Forschungsgemeinschaft DFG  
Deutsche Forschungsgemeinschaft DFG  
Deutsche Forschungsgemeinschaft DFG  
Open Access
DOI
10.1039/d1na00238d
Additional link
Full text
Language
English
Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme IMS  
Keyword(s)
  • fluorescence lifetime imaging

  • fluorescence lifetime

  • layered silicate

  • macroscopic scale

  • multicolor imaging

  • near-infrared (NIR)

  • photophysical properties

  • remote imaging

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