Hostname: page-component-78c5997874-m6dg7 Total loading time: 0 Render date: 2024-11-10T09:14:09.839Z Has data issue: false hasContentIssue false

Plasmon Enhanced Emission of Perovskite Quantum Dot Films

Published online by Cambridge University Press:  09 January 2018

Seyma Dadı
Affiliation:
Abdullah Gül University, Department of Materials Science and Nanotechnology Engineering, 38080, Kayseri, Turkey
Yemliha Altıntas
Affiliation:
Abdullah Gül University, Department of Materials Science and Nanotechnology Engineering, 38080, Kayseri, Turkey
Emre Beskazak
Affiliation:
Abdullah Gül University, Department of Electrical-Electronics Engineering, 38080, Kayseri, Turkey
Evren Mutlugun*
Affiliation:
Abdullah Gül University, Department of Electrical-Electronics Engineering, 38080, Kayseri, Turkey
Get access

Abstract

We propose and demonstrate the photoluminescence enhancement of CsPbBr3 perovskite quantum dot films in the presence of Au nanoparticles. Embedded into a polymer matrix, Au nanoparticle- quantum dot film assemble prepared by an easy spin coating method enabled the photoluminescence enhancement of perovskite quantum dot films up to 78%. The properties of the synthesized perovskite QDs and gold nanoparticles have been analysed using high resolution transmission electron microscopy, X-ray diffraction, energy dispersive X- ray spectroscopy, UV-Vis absorption spectrophotometer, steady state and time-resolved photoluminescence spectrometer.

Type
Articles
Copyright
Copyright © Materials Research Society 2018 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

Footnotes

*

The authors contributed equally to this work

References

REFERENCES

Alivisatos, A.P., Science 271, 933 (1996).Google Scholar
Protesescu, L., Yakunin, S., Bodnarchuk, M.I., Krieg, F., Caputo, R., Hendon, C.H., Yang, R.X., Walsh, A., and Kovalenko, M.V., Nano Lett. 15, 3692 (2015).Google Scholar
Wang, Y., Li, X., Song, J., Xian, L., Zeng, H., and Sun, H., Adv. Mater. 27, 7101 (2015)CrossRefGoogle Scholar
Shan, Q., Li, J., Song, J., Zou, Y., Xu, L., Xue, J., Dong, Y., Huo, C., Chen, J., Han, B., and Zeng, H., J.Mater. Chem. C 5, 4565 (2017).CrossRefGoogle Scholar
Wang, H.-C., Lin, S.-Y., Tang, A.-C., Singh, B.P., Tong, H.-C., Chen, C.-Y., Lee, Y.-C., Tsai, T.-L., and Liu, R.-S., Angew. Chem. 28, 7924 (2016).Google Scholar
Sun, C., Zhang, Y., Ruan, C., Yin, C., Wang, X., Wang, Y., and Yu, W.W., Adv. Mater. 28, 1008 (2016).Google Scholar
Arinze, E.S., Qui, B., Nyirjesy, G., and Thon, S.M., ACS Photonics 3, 158 (2016).Google Scholar
Palacios, S.C.-, Solano, A.J.-, and Míguez, H., ACS Energy Lett. 1, 323 (2016).Google Scholar
Jesuraj, P. J., Jeganthan, K., RSC Adv. 5 684 (2015).Google Scholar
Munkhbat, B., Pohl, H., Denk, P., Klar, T.A., Scharber, M.C., and Hrelescu, C., Adv. Opt. Mater. 4, 772 (2016).Google Scholar
Kim, Y.Y., Hyun, W.J., Park, K.H., Lee, Y.G., Lee, J., Park, O.O., Matsuoka, , and Ohtani, N., J. Mater. Chem. C 4, 10445 (2016).CrossRefGoogle Scholar
Peng, B., Li, Z., Mutlugun, E., Hernandez-Martinez, P.L., Li, D., Zhang, Q., Gao, Y., and Demir, H.V., Xiong, Q., Nanoscale 6, 5592 (2014).Google Scholar
Soganci, I.M., Nizamoglu, S., Mutlugun, E., Akin, O., and Demir, H.V., Opt. Express 15, 1428, (2007).Google Scholar
Ribeiro, T., Baleizao, C., Farinha, J.P.S., Sci. Rep. 7, 2440 (2017).Google Scholar
Ozel, T., Hernandez-Martinez, P. L., Mutlugun, E., Akin, O., Nizamoglu, S., Ozel, I.O., Zhang, Q., Xiong, Q., and Demir, H. V., Nano Lett. 7, 3065 (2013).Google Scholar
Samanta, A., Zhou, Y., Zou, S., Yan, H., and Liu, Y., Nano Lett. 14, 5052 (2014).Google Scholar
Jin, Y., Gao, X., Nature Nanotechnology 4, 571 (2009).Google Scholar
Lunz, M., Gerard, V.A., Gun’ko, Y.K., Lesnyak, V., Gaponik, N., , N., Susha, A.S., Rogach, A., and Bradley, A.L., Nano lLett. 11, 3341 (2011).CrossRefGoogle Scholar
Cicek, N., Nizamoglu, S., Ozel, T., Mutlugun, E., Karatay, D.U., Lesnyak, V., Otto, T., Gaponik, N., Eychmüller, A., and Demir, H.V., Appl. Phys. Lett. 4, 061105 (2009).Google Scholar
Wei, Y., Yang, J., Ying, J., Chem. Com. 46, 3179 (2010).Google Scholar
Roo, J.D., Ibanez, M., ACS Nano 10, 2071 (2016).Google Scholar
Supplementary material: File

Dadı et al. supplementary material 1

Dadı et al. supplementary material

Download Dadı et al. supplementary material 1(File)
File 94.9 KB