Trade‐off Lattice Site Occupancy Engineering Strategy for Near‐Infrared Phosphors with Ultrabroad and Tunable Emission. Issue 2 (5th November 2021)
- Record Type:
- Journal Article
- Title:
- Trade‐off Lattice Site Occupancy Engineering Strategy for Near‐Infrared Phosphors with Ultrabroad and Tunable Emission. Issue 2 (5th November 2021)
- Main Title:
- Trade‐off Lattice Site Occupancy Engineering Strategy for Near‐Infrared Phosphors with Ultrabroad and Tunable Emission
- Authors:
- Lang, Tianchun
Cai, Mingsheng
Fang, Shuangqiang
Han, Tao
He, Shuangshuang
Wang, Qunyi
Ge, Guanghui
Wang, Jun
Guo, Chaozhong
Peng, Lingling
Cao, Shixiu
Liu, Bitao
Korepanov, Vladimir I.
Yakovlev, Alexey N.
Qiu, Jianbei - Abstract:
- Abstract: Broadband near‐infrared (NIR) luminescent materials have received notable attention due to their distinct photophysical properties for designing NIR light‐emitting diodes (NIR LEDs). Here, a series of Ca3− x Lu x Ga2+ x Ge3− x O12 :Cr 3+ (CLGGG:Cr 3+ ) ( x = 0–1) NIR‐emitting garnet phosphors with an emission range of 660–1200 nm are successfully developed and their lattice parameters are structurally analyzed. Upon 460 nm blue light excitation, the NIR phosphors exhibit both a substantial spectral broadening (FWHM: 129→267 nm) and a redshift of 37 nm (766→803 nm) with cosubstitution of [Lu 3+ –Ga 3+ ] pairs for [Ca 2+ –Ge 4+ ] sites. Furthermore, their luminescence thermal stability is substantially improved, maintaining ≈90% of the original photoluminescence intensity at 150 °C, owing to shrinkage of the second coordination sphere and rigid lattice, which are strongly associated with Cr 3+ trade‐off occupancy and local structure evolutions. The relation between the trade‐off site occupation of Cr 3+ in GaO6 /CaO8 polyhedrons and the NIR emission is also clarified by evaluating the decay and electron paramagnetic resonance behavior of Cr 3+ at different sites. The broadband NIR phosphors investigated here can serve as auspicious luminescent converters for phosphor‐converted NIR LEDs and can provide an inspiring platform for future studies. Abstract : By employing a trade‐off lattice site occupancy engineering strategy, a series of near‐infrared emitting phosphorsAbstract: Broadband near‐infrared (NIR) luminescent materials have received notable attention due to their distinct photophysical properties for designing NIR light‐emitting diodes (NIR LEDs). Here, a series of Ca3− x Lu x Ga2+ x Ge3− x O12 :Cr 3+ (CLGGG:Cr 3+ ) ( x = 0–1) NIR‐emitting garnet phosphors with an emission range of 660–1200 nm are successfully developed and their lattice parameters are structurally analyzed. Upon 460 nm blue light excitation, the NIR phosphors exhibit both a substantial spectral broadening (FWHM: 129→267 nm) and a redshift of 37 nm (766→803 nm) with cosubstitution of [Lu 3+ –Ga 3+ ] pairs for [Ca 2+ –Ge 4+ ] sites. Furthermore, their luminescence thermal stability is substantially improved, maintaining ≈90% of the original photoluminescence intensity at 150 °C, owing to shrinkage of the second coordination sphere and rigid lattice, which are strongly associated with Cr 3+ trade‐off occupancy and local structure evolutions. The relation between the trade‐off site occupation of Cr 3+ in GaO6 /CaO8 polyhedrons and the NIR emission is also clarified by evaluating the decay and electron paramagnetic resonance behavior of Cr 3+ at different sites. The broadband NIR phosphors investigated here can serve as auspicious luminescent converters for phosphor‐converted NIR LEDs and can provide an inspiring platform for future studies. Abstract : By employing a trade‐off lattice site occupancy engineering strategy, a series of near‐infrared emitting phosphors with ultrabroad emission are realized. The broadband spectra consist of two reasonable sub‐bands which are assigned to the trade‐off site occupation of Cr 3+ in GaO6 /CaO8 polyhedrons. These broadband phosphors are excellent candidates for practical application in a wide array of advanced technology fields. … (more)
- Is Part Of:
- Advanced optical materials. Volume 10:Issue 2(2022)
- Journal:
- Advanced optical materials
- Issue:
- Volume 10:Issue 2(2022)
- Issue Display:
- Volume 10, Issue 2 (2022)
- Year:
- 2022
- Volume:
- 10
- Issue:
- 2
- Issue Sort Value:
- 2022-0010-0002-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2021-11-05
- Subjects:
- lattice site occupancy -- NIR phosphor -- superexchange coupling -- trade‐off engineering strategy -- ultrabroad emission
Optical materials -- Periodicals
Photonics -- Periodicals
620.11295 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2195-1071 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/adom.202101633 ↗
- Languages:
- English
- ISSNs:
- 2195-1071
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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- British Library DSC - 0696.918600
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