Ce3+-sensitized GdPO4: Tb3+ nanorods: an investigation on energy transfer, luminescence switching, and quantum yield


Journal article


Niroj Kumar Sahu, N Shanta Singh, RS Ningthoujam, D Bahadur
Acs Photonics, vol. 1, American Chemical Society, 2014, pp. 337--346

Cite

Cite

APA   Click to copy
Sahu, N. K., Shanta Singh, N., Ningthoujam, R. S., & Bahadur, D. (2014). Ce3+-sensitized GdPO4: Tb3+ nanorods: an investigation on energy transfer, luminescence switching, and quantum yield. Acs Photonics, 1, 337–346.


Chicago/Turabian   Click to copy
Sahu, Niroj Kumar, N Shanta Singh, RS Ningthoujam, and D Bahadur. “Ce3+-Sensitized GdPO4: Tb3+ Nanorods: an Investigation on Energy Transfer, Luminescence Switching, and Quantum Yield.” Acs Photonics 1 (2014): 337–346.


MLA   Click to copy
Sahu, Niroj Kumar, et al. “Ce3+-Sensitized GdPO4: Tb3+ Nanorods: an Investigation on Energy Transfer, Luminescence Switching, and Quantum Yield.” Acs Photonics, vol. 1, American Chemical Society, 2014, pp. 337–46.


BibTeX   Click to copy

@article{sahu2014a,
  title = {Ce3+-sensitized GdPO4: Tb3+ nanorods: an investigation on energy transfer, luminescence switching, and quantum yield},
  year = {2014},
  journal = {Acs Photonics},
  pages = {337--346},
  publisher = {American Chemical Society},
  volume = {1},
  author = {Sahu, Niroj Kumar and Shanta Singh, N and Ningthoujam, RS and Bahadur, D}
}


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