Photonics Research, 2018, 6 (11): 11001021, Published Online: Nov. 11, 2018  

Superior multiphoton absorption properties in colloidal Mn-doped CsPbCl3 two-dimensional nanoplatelets

Author Affiliations
College of Physics and Energy, Shenzhen University, Shenzhen 518060, China
Copy Citation Text

Tingchao He, Junzi Li, Xin Qiu, Shuyu Xiao, Xiaodong Lin. Superior multiphoton absorption properties in colloidal Mn-doped CsPbCl3 two-dimensional nanoplatelets[J]. Photonics Research, 2018, 6(11): 11001021.

References

[1] L. Protesescu, S. Yakunin, M. I. Bodnarchuk, F. Krieg, R. Caputo, C. H. Hendon, R. X. Yang, A. Walsh, M. V. Kovalenko. Nanocrystals of cesium lead halide perovskites (CsPbX3, X=Cl, Br, and I): novel optoelectronic materials showing bright emission with wide color gamut. Nano Lett., 2015, 15: 3692-3696.

[2] Q. A. Akkerman, G. Rainò, M. V. Kovalenko, L. Manna. Genesis, challenges and opportunities for colloidal lead halide perovskite nanocrystals. Nat. Mater., 2018, 17: 394-405.

[3] J. Kang, L. Wang. High defect tolerance in lead halide perovskite CsPbBr3. J. Phys. Chem. Lett., 2017, 8: 489-493.

[4] T. He, J. Li, X. Li, C. Ren, Y. Luo, F. Zhao, R. Chen, X. Lin, J. Zhang. Spectroscopic studies of chiral perovskite nanocrystals. Appl. Phys. Lett., 2017, 111: 151102.

[5] X. Li, Y. Wu, S. Zhang, B. Cai, Y. Cui, J. Song, H. Zeng. CsPbX3 quantum dots for lighting and displays: room-temperature synthesis, photoluminescence superiorities, underlying origins and white light-emitting diodes. Adv. Funct. Mater., 2016, 26: 2435-2445.

[6] J. Chen, P. Chábera, T. Pascher, M. E. Messing, R. Schaller, S. Canton, K. Zheng, T. Pullerits. Enhanced size selection in two-photon excitation for CsPbBr3 perovskite nanocrystals. J. Phys. Chem. Lett., 2017, 8: 5119-5124.

[7] Y. Wang, X. Li, X. Zhao, L. Xiao, H. Zeng, H. Sun. Nonlinear absorption and low-threshold multiphoton pumped stimulated emission from all-inorganic perovskite nanocrystals. Nano Lett., 2016, 16: 448-453.

[8] X. X. Sheng, G. Y. Chen, C. Wang, W. Q. Wang, J. F. Hui, Q. Zhang, K. H. Yu, W. Wei, M. D. Yi, M. Zhang, Y. Deng, P. Wang, X. X. Xu, Z. H. Dai, J. C. Bao, X. Wang. Polarized optoelectronics of CsPbX3 (X = Cl, Br, I) perovskite nanoplates with tunable size and thickness. Adv. Funct. Mater., 2018, 28: 1800283.

[9] J. Li, C. Ren, X. Qiu, X. Lin, R. Chen, C. Yin, T. He. Ultrafast optical nonlinearity of blue-emitting perovskite nanocrystals. Photon. Res., 2018, 6: 554-559.

[10] D. Parobek, B. J. Roman, Y. Dong, H. Jin, E. Lee, M. Sheldon, D. H. Son. Exciton-to-dopant energy transfer in Mn-doped cesium lead halide perovskite nanocrystals. Nano Lett., 2016, 16: 7376-7380.

[11] A. Swarnkar, V. Kumar Ravi, A. Nag. Beyond colloidal cesium lead halide perovskite nanocrystals: analogous metal halides and doping. ACS Energy Lett., 2017, 2: 1089-1098.

[12] J. Yao, J. Ge, B. Han, K. Wang, H. Yao, H. Yu, J. Li, B. Zhu, J. Song, C. Chen, Q. Zhang, H. Zeng, Y. Luo, S. Yu. Ce3+-doping to modulate photoluminescence kinetics for efficient CsPbBr3 nanocrystals based light-emitting diodes. J. Am. Chem. Soc., 2018, 140: 3626-3634.

[13] J. Zhu, X. Yang, Y. Zhu, Y. Wang, J. Cai, J. Shen, L. Sun, C. Li. Room-temperature synthesis of Mn-doped cesium lead halide quantum dots with high Mn substitution ratio. J. Phys. Chem. Lett., 2017, 8: 4167-4171.

[14] W. J. Mir, M. Jagadeeswararao, S. Das, A. Nag. Colloidal Mn-doped cesium lead halide perovskite nanoplatelets. ACS Energy Lett., 2017, 2: 537-543.

[15] T. He, C. Ren, Z. Li, S. Xiao, J. Li, X. Lin, C. Ye, J. Zhang, L. Guo, W. Hu, R. Chen. Thermally activated delayed fluorescence organic dots for two-photon fluorescence lifetime imaging. Appl. Phys. Lett., 2018, 112: 211102.

[16] P. Wu, X. Yan. Doped quantum dots for chemo/biosensing and bioimaging. Chem. Soc. Rev., 2013, 42: 5489-5521.

[17] T. He, J. Li, C. Ren, S. Xiao, Y. Li, R. Chen, X. Lin. Strong two-photon absorption of Mn-doped CsPbCl3 perovskite nanocrystals. Appl. Phys. Lett., 2017, 111: 211105.

[18] J. Chen, K. Žídek, P. Chábera, D. Liu, P. Cheng, L. Nuuttila, M. J. Al-Marri, H. Lehtivuori, M. E. Messing, K. Han, K. Zheng, T. Pullerits. Size- and wavelength-dependent two-photon absorption cross-section of CsPbBr3 perovskite quantum dots. J. Phys. Chem. Lett., 2017, 8: 2316-2321.

[19] R. Scott, A. W. Achtstein, A. Prudnikau, A. Antanovich, S. Christodoulou, I. Moreels, M. Artemyev, U. Woggon. Two photon absorption in II-VI semiconductors: the influence of dimensionality and size. Nano Lett., 2015, 15: 4985-4992.

[20] S. Das Adhikari, S. K. Dutta, A. Dutta, A. K. Guria, N. Pradhan. Chemically tailoring the dopant emission in manganese-doped CsPbCl3 perovskite nanocrystals. Angew. Chem. (Int. Ed.), 2017, 56: 8746-8750.

[21] M. Sheik-Bahae, A. A. Said, T.-H. Wei, D. J. Hagan, E. W. Van Stryland. Sensitive measurement of optical nonlinearities using a single beam. IEEE J. Quantum Electron., 1990, 26: 760-769.

[22] R. S. S. Kumar, S. V. Rao, L. Giribabu, D. N. Rao. Femtosecond and nanosecond nonlinear optical properties of alkyl phthalocyanines studied using Z-scan technique. Chem. Phys. Lett., 2007, 447: 274-278.

[23] G. S. He, G. C. Xu, P. N. Prasad, B. A. Reinhardt, J. C. Bhatt, A. G. Dillard. Two-photon absorption and optical-limiting properties of novel organic compounds. Opt. Lett., 1995, 20: 435-437.

[24] G. S. He, J. D. Bhawalkar, P. N. Prasad, B. A. Reinhardt. Three-photon-absorption-induced fluorescence and optical limiting effects in an organic compound. Opt. Lett., 1995, 20: 1524-1526.

[25] I. Levchuk, A. Osvet, X. Tang, M. Brandl, J. D. Perea, F. Hoegl, G. J. Matt, R. Hock, M. Batentschuk, C. J. Brabec. Brightly luminescent and color-tunable formamidinium lead halide perovskite FAPbX3 (X = Cl, Br, I) colloidal nanocrystals. Nano Lett., 2017, 17: 2765-2770.

[26] Y. Dong, T. Qiao, D. Kim, D. Parobek, D. Rossi, D. H. Son. Precise control of quantum confinement in cesium lead halide perovskite quantum dots via thermodynamic equilibrium. Nano Lett., 2018, 18: 3716-3722.

[27] B. J. Bohn, Y. Tong, M. Gramlich, M. L. Lai, M. Döblinger, K. Wang, R. L. Z. Hoye, P. Müller-Buschbaum, S. D. Stranks, A. S. Urban, L. Polavarapu, J. Feldmann. Boosting tunable blue luminescence of halide perovskite nanoplatelets through postsynthetic surface trap repair. Nano Lett., 2018, 18: 5231-5238.

[28] J. Butkus, P. Vashishtha, K. Chen, J. K. Gallaher, S. K. K. Prasad, D. Z. Metin, G. Laufersky, N. Gaston, J. E. Halpert, J. M. Hodgkiss. The evolution of quantum confinement in CsPbBr3 perovskite nanocrystals. Chem. Mater., 2017, 29: 3644-3652.

[29] D. Rossi, D. Parobek, Y. Dong, D. H. Son. Dynamics of exciton-Mn energy transfer in Mn-doped CsPbCl3 perovskite nanocrystals. J. Phys. Chem. C, 2017, 121: 17143-17149.

[30] A. W. Achtstein, A. Antanovich, A. Prudnikau, R. Scott, U. Woggon, M. Artemyev. Linear absorption in CdSe nanoplates: thickness and lateral size dependency of the intrinsic absorption. J. Phys. Chem. C, 2015, 119: 20156-20161.

[31] T. He, J. Li, X. Qiu, S. Xia, C. Yin, X. Lin. Highly enhanced normalized-volume multiphoton absorption in CsPbBr3 2D nanoplates. Adv. Opt. Mater., 2018, 2018: 1800843.

[32] T. He, R. Chen, Z. B. Lim, D. Rajwar, L. Ma, Y. Wang, Y. Gao, A. C. Grimsdale, H. Sun. Efficient energy transfer under two-photon excitation in a 3D, supramolecular, Zn(II)-coordinated, self-assembled organic network. Adv. Opt. Mater., 2014, 2: 40-47.

[33] G. S. He, L. S. Tan, Q. Zheng, P. N. Prasad. Multiphoton absorbing materials: molecular designs, characterizations, and applications. Chem. Rev., 2008, 108: 1245-1330.

[34] C. Huang, Y. G. Shuai, W. Zhang, N. Yia, S. Xiao, Q. Song. Giant blueshifts of excitonic resonances in two-dimensional lead halide perovskite. Nano Energy, 2017, 41: 320-326.

[35] O. Saouma, C. C. Stoumpos, J. Wong, M. G. Kanatzidis, J. I. Jang. Selective enhancement of optical nonlinearity in two-dimensional organic-inorganic lead iodide perovskites. Nat. Commun., 2017, 8: 742.

[36] A. W. Achtstein, A. Ballester, J. L. Movilla, J. Hennig, J. I. Climente, A. Prudnikau, A. Antanovich, R. Scott, M. V. Artemyev, J. Planelles, U. Woggon. One- and two-photon absorption in CdS nanodots and wires: the role of dimensionality in the one- and two-photon luminescence excitation spectrum. J. Phys. Chem. C, 2015, 119: 1260-1267.

[37] L. A. Padilha, G. Nootz, P. D. Olszak, S. Webster, D. J. Hagan, E. W. Van Stryland, L. Levina, V. Sukhovatkin, L. Brzozowski, E. H. Sargent. Optimization of band structure and quantum-size-effect tuning for two-photon absorption enhancement in quantum dots. Nano Lett., 2011, 11: 1227-1231.

[38] A. K. Mandal, S. Sreejith, T. He, S. K. Maji, X. Wang, S. L. Ong, J. Joseph, H. Sun, Y. Zhao. Three-photon-excited luminescence from unsymmetrical cyanostilbene aggregates: morphology tuning and targeted bioimaging. ACS Nano, 2015, 9: 4796-4805.

[39] J. Qian, D. Wang, F. Cai, W. Xi, L. Peng, Z. Zhu, H. He, M. Hu, S. He. Observation of multiphoton-induced fluorescence from graphene oxide nanoparticles and applications in vivo functional bioimaging. Angew. Chem. (Int. Ed.), 2012, 51: 10570-10575.

[40] R. Subha, V. Nalla, J. H. Yu, S. W. Jun, K. Shin, T. Hyeon, C. Vijayan, W. Ji. Efficient photoluminescence of Mn2+-doped ZnS quantum dots excited by two-photon absorption in near-infrared window II. J. Phys. Chem. C, 2013, 117: 20905-20911.

[41] J. H. Yu, S. Kwon, Z. Petrášek, O. K. Park, S. Woojoo Jun, K. Shin, M. Choi, Y. Il Park, K. Park, H. B. Na, N. Lee, D. W. Lee, J. H. Kim, P. Schwille, T. Hyeon. High-resolution three-photon biomedical imaging using doped ZnS nanocrystals. Nat. Mater., 2013, 12: 359-366.

Tingchao He, Junzi Li, Xin Qiu, Shuyu Xiao, Xiaodong Lin. Superior multiphoton absorption properties in colloidal Mn-doped CsPbCl3 two-dimensional nanoplatelets[J]. Photonics Research, 2018, 6(11): 11001021.

引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!