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13. P. Singh, P.K. Shahi, A. Rai, A. Bahadur, S.B. Rai, Opt. Mater. 58, 432–438 (2016)
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28. D.L. Dexter, J.H. Schulman, J. Chem. Phys. 22, 1063–1070 (1954)
29. K.W. Kramer, D. Biner, G. Frei, H.U. Gudel, M.P. Hehlen, S.R. Luthi, Chem. Mater. 16,
1244–1251 (2004)
30. A. Patra, C.S. Friend, R. Kapoor, P.N. Prasad, Appl. Phys. Lett. 83, 284–286 (2003)
31. C. Lin, M.T. Berry, R. Anderson, S. Smith, P.S. May, Chem. Mater. 21, 3406–3413 (2009)
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33. M.A. Antoniak, S.J. Zelewski, R. Oliva, A. ˙
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34. A. Shalav, B.S. Richards, T. Trupke, Appl. Phys. Lett. 86, 013505–013507 (2005)
35. X. Chen, W. Xu, H. Song, C. Chen, H. Xia, Y. Zhu, D. Zhou, S. Cui, Q. Dai, J. Zhang, ACS
Appl. Mater. Interfaces 8(14), 9071–9079 (2016)
36. A.D. Ostrowski, E.M. Chan, D.J. Gargas, E.M. Katz, G. Han, P.J. Schuck, D.J. Milliron, B.E.
Cohen, ACS Nano 6(3), 2686–2692 (2012)
37. S. Wu, G. Han, D.J. Milliron, S. Aloni, V. Altoe, D.V. Talapin, B.E. Cohen, P.J. Schuck, Proc.
Natl Acad. Sci. USA 106, 10917–10921 (2009)
38. J.C. Boyer, N.J.J. Johnson, F.C.J.M. Van Veggel, Chem. Mater. 21(10), 2010–2012 (2009)
39. M. Wang, Y. Zhu, C. Mao, Langmuir 31(25), 7084–7090 (2015)
40. P. Singh, P. Singh, R. Prakash, S.B. Rai, S.K. Singh, Curr. Appl. Phys. 20(10), 1150–1155
(2020)
41. R. Lv, P. Yang, F. He, S. Gai, G. Yang, J. Lin, Chem. Mater. 27, 483–496 (2015)
42. Y.H. Wang, P. Shen, C.Y. Li, Y.Y. Wang, Z.H. Liu, Anal. Chem. 84, 1466–1473 (2012)
P. Singh et al.
3. Y. Jin, X. Gao, Nat. Nanotechnol. 4, 571–576 (2009)
4. I.L. Medintz, T. Pons, K. Susumu, K. Boeneman, A.M. Dennis, D. Farre, J.R. Deschamps, J.S.
Melinger, G. Bao, H. Mattoussi, J. Phys. Chem. C 113, 18552–18561 (2009)
5. Y. Wang, N. Herron, V.V. Grushin, D. LeCloux, and V. Petrov Appl. Phys. Lett. 79, 449–451
(2001)
6. P.K. Shahi, P. Singh, S.B. Rai, A. Bahadur, Inorg. Chem. 55, 1535–1541 (2016)
7. G. G. Stoke’s, Philos. Trans. 142, 463–562 (1852)
8. E. Lommel, Ann. Phys. Chem. 3, 251–283 (1878)
9. E. Lommel, Ueber Fluorescenz. Ann. Phys. Chem. 143, 26–51 (1871)
10. F. Auzel, Chem. Rev. 104, 139–174 (2004)
11. C. R. Ronda, (Wiley-VCH, 2007)
12. S.K. Singh, K. Kumar, S.B. Rai, Sens. Actuat. 149, 16–20 (2009)
13. P. Singh, P.K. Shahi, A. Rai, A. Bahadur, S.B. Rai, Opt. Mater. 58, 432–438 (2016)
14. P. Singh, P.K. Shahi, S.K. Singh, A.K. Singh, M.K. Singh, R. Prakash, S.B. Rai, Nanoscale 9,
696–705 (2017)
15. H. Lin, D.Q. Chen, Y.L. Yu, Z.F. Shan, P. Huang, Y.S. Wang, J.L. Yuan, J. Appl. Phys. 107,
103511–103514 (2010)
16. S.F. Lim, R. Riehn, W.S. Ryu, N. Khanarian, C.K. Tung, D. Tank et al., Nano Lett. 6, 169–174
(2006)
17. N. Bloembergen, Phys. Rev. Lett. 2, 84–85 (1959)
18. P. Singh, P.K. Shahi, R. Prakash, S.B. Rai, Nanotechnology 28, 415701–415712 (2017)
19. P. Singh, P.K. Shahi, S.K. Singh, S.B. Rai, J. Alloys Compd. 681, 477–485 (2016)
20. Y. Guyot, H. Manaa, J.Y. Rivoire, R. Moncorgé, N. Garnier, E. Descroix, M. Bon, P. Laporte,
Phys. Rev. B 51, 784–799 (1995)
21. F.C.R. Auzel, Acad. Sci. (Paris) 262, 1016–1019 (1966)
22. J.S. Chivian, W.E. Case, D.D. Eden, Appl. Phys. Lett. 35, 124–125 (1979)
23. C.A. Parker, C. Hatchard, Proc. Chem. Soc. 147, 386–387 (1962)
24. C. Duan, L. Liang, L. Li, R. Zhang, Z.P. Xu, J. Mater. Chem. B 6, 192–209 (2018)
25. M. Haase, H. Schfer, Angew. Chem. Int. Ed. 50, 5808–5829 (2011)
26. K.W. Kramer, D. Biner, G. Frei, H.U. Gudel, M.P. Hehlen, S.R. Luthi Chem. Mater. 16, 7,
1244–1251 (2004)
27. P. Singh, S.K. Singh, P. Singh, R. Prakash, S.B. Rai, Mater. Res. Bull. 122, 110663 (2020)
28. D.L. Dexter, J.H. Schulman, J. Chem. Phys. 22, 1063–1070 (1954)
29. K.W. Kramer, D. Biner, G. Frei, H.U. Gudel, M.P. Hehlen, S.R. Luthi, Chem. Mater. 16,
1244–1251 (2004)
30. A. Patra, C.S. Friend, R. Kapoor, P.N. Prasad, Appl. Phys. Lett. 83, 284–286 (2003)
31. C. Lin, M.T. Berry, R. Anderson, S. Smith, P.S. May, Chem. Mater. 21, 3406–3413 (2009)
32. F. Vetrone, R. Naccache, A. Zamarro, A.J. d. la Fuente, F.S. odrı´guez, L. M. Maestro, E.M.
Rodriguez, D. Jaque, J.G. Sole, J.A. Capobianco, ACS Nano, 4(6), 3254–3258 (2010)
33. M.A. Antoniak, S.J. Zelewski, R. Oliva, A. ˙
Zak, R. Kudrawiec, M. Nyk, A.C.S. Appl, Nano
Mater. 3, 4209–4217 (2020)
34. A. Shalav, B.S. Richards, T. Trupke, Appl. Phys. Lett. 86, 013505–013507 (2005)
35. X. Chen, W. Xu, H. Song, C. Chen, H. Xia, Y. Zhu, D. Zhou, S. Cui, Q. Dai, J. Zhang, ACS
Appl. Mater. Interfaces 8(14), 9071–9079 (2016)
36. A.D. Ostrowski, E.M. Chan, D.J. Gargas, E.M. Katz, G. Han, P.J. Schuck, D.J. Milliron, B.E.
Cohen, ACS Nano 6(3), 2686–2692 (2012)
37. S. Wu, G. Han, D.J. Milliron, S. Aloni, V. Altoe, D.V. Talapin, B.E. Cohen, P.J. Schuck, Proc.
Natl Acad. Sci. USA 106, 10917–10921 (2009)
38. J.C. Boyer, N.J.J. Johnson, F.C.J.M. Van Veggel, Chem. Mater. 21(10), 2010–2012 (2009)
39. M. Wang, Y. Zhu, C. Mao, Langmuir 31(25), 7084–7090 (2015)
40. P. Singh, P. Singh, R. Prakash, S.B. Rai, S.K. Singh, Curr. Appl. Phys. 20(10), 1150–1155
(2020)
41. R. Lv, P. Yang, F. He, S. Gai, G. Yang, J. Lin, Chem. Mater. 27, 483–496 (2015)
42. Y.H. Wang, P. Shen, C.Y. Li, Y.Y. Wang, Z.H. Liu, Anal. Chem. 84, 1466–1473 (2012)
