Chinese Journal of Lasers, Volume. 47, Issue 7, 701024(2020)
Synthesis and Stability of CsPbBr3 Perovskite Nanorods with High Optical Gain
[1] Yang S, Chen S S, Mosconi E et al. Stabilizing halide perovskite surfaces for solar cell operation with wide-bandgap lead oxysalts[J]. Science, 365, 473-478(2019).
[2] Jung E H, Jeon N J, Park E Y et al. Efficient,stable and scalable perovskite solar cells using poly (3-hexylthiophene)[J]. Nature, 567, 511-515(2019).
[4] Liu Y C, Yang Z, Liu S F. Recent progress in single-crystalline perovskite research including crystal preparation, property evaluation, and applications[J]. Advanced Science, 5, 1700471(2018).
[5] Qiu T, Hu Y Q, Xu F et al. Recent advances in one-dimensional halide perovskites for optoelectronic applications[J]. Nanoscale, 10, 20963-20989(2018).
[7] Veldhuis S A, Boix P P, Yantara N et al. Perovskite materials for light-emitting diodes and lasers[J]. Advanced Materials, 28, 6804-6834(2016).
[8] Xu Y Q, Chen Q, Zhang C F et al. Two-photon-pumped perovskite semiconductor nanocrystal lasers[J]. Journal of the American Chemical Society, 138, 3761-3768(2016).
[9] Akkerman Q A, Rainò G, Kovalenko M V et al. Genesis,challenges and opportunities for colloidal lead halide perovskite nanocrystals[J]. Nature Materials, 17, 394-405(2018).
[10] Chen M, Zou Y T, Wu L Z et al. Solvothermal synthesis of high-quality all-inorganic cesium lead halide perovskite nanocrystals: from nanocube to ultrathin nanowire[J]. Advanced Functional Materials, 27, 1701121(2017).
[11] Kulbak M, Gupta S, Kedem N et al. Cesium enhances long-term stability of lead bromide perovskite-based solar cells[J]. The Journal of Physical Chemistry Letters, 7, 167-172(2016).
[12] Seth S, Mondal N, Patra S et al. Fluorescence blinking and photoactivation of all-inorganic perovskite nanocrystals CsPbBr3 and CsPbBr2I[J]. The Journal of Physical Chemistry Letters, 7, 266-271(2016).
[13] Dey A, Rathod P, Kabra D. Role of localized states in photoluminescence dynamics of high optical gain CsPbBr3 nanocrystals[J]. Advanced Optical Materials, 6, 1800109(2018).
[14] Balena A, Perulli A, Fernandez M et al. Temperature dependence of the amplified spontaneous emission from CsPbBr3 nanocrystal thin films[J]. The Journal of Physical Chemistry C, 122, 5813-5819(2018).
[15] Huang H, Bodnarchuk M I, Kershaw S V et al. Leadhalide perovskite nanocrystals in the research spotlight: stability and defect tolerance[J]. ACS Energy Letters, 2, 2071-2083(2017).
[16] Huang H, Raith J, Kershaw S V et al. Growth mechanism of strongly emitting CH3NH3PbBr3 perovskite nanocrystals with a tunable bandgap[J]. Nature Communications, 8, 996(2017).
[17] Loiudice A, Saris S, Oveisi E et al. CsPbBr3 QD/AlOx inorganic nanocomposites with exceptional stability in water, light, and heat[J]. Angewandte Chemie International Edition, 56, 10696-10701(2017).
[18] de Roo J, Ibáñez M, Geiregat P et al. Highly dynamic ligand binding and light absorption coefficient of cesium lead bromide perovskite nanocrystals[J]. ACS Nano, 10, 2071-2081(2016).
[19] Anderson N C, Hendricks M P, Choi J J et al. Ligand exchange and the stoichiometry of metal chalcogenide nanocrystals: spectroscopic observation of facile metal-carboxylate displacement and binding[J]. Journal of the American Chemical Society, 135, 18536-18548(2013).
[20] Hou S C, Guo Y Z, Tang Y G et al. Synthesis and stabilization of colloidal perovskite nanocrystals by multidentate polymer micelles[J]. ACS Applied Materials & Interfaces, 9, 18417-18422(2017).
[21] Li R X, Wei Z P, Zhao H X et al. Linear and nonlinear optical characteristics of all-inorganic perovskite CsPbBr3 quantum dots modified by hydrophobic zeolites[J]. Nanoscale, 10, 22766-22774(2018).
[22] Shi Z F, Li Y, Zhang Y T et al. High-efficiency and air-stable perovskite quantum dots light-emitting diodes with an all-inorganic heterostructure[J]. Nano Letters, 17, 313-321(2017).
[23] Chen Y, Yu M H, Ye S et al. All-inorganic CsPbBr3 perovskite quantum dots embedded in dual-mesoporous silica with moisture resistance for two-photon-pumped plasmonic nano lasers[J]. Nanoscale, 10, 6704-6711(2018).
[24] Huang H, Chen B K, Wang Z G et al. Water resistant CsPbX3 nanocrystals coated with polyhedral oligomeric silsesquioxane and their use as solid state luminophores in all-perovskite white light-emitting devices[J]. Chemical Science, 7, 5699-5703(2016).
[25] Luo B B, Pu Y C, Lindley S A et al. Organolead halide perovskite nanocrystals: branched capping ligands control crystal size and stability[J]. Angewandte Chemie International Edition, 55, 8864-8868(2016).
[26] Xuan T T, Yang X F, Lou S Q et al. Highly stable CsPbBr3 quantum dots coated with alkyl phosphate for white light-emitting diodes[J]. Nanoscale, 9, 15286-15290(2017).
[27] Pan A Z, Wang J L, Jurow M J et al. General strategy for the preparation of stable luminous nanocomposite inks using chemically addressable CsPbX3 peroskite nanocrystals[J]. Chemistry of Materials, 30, 2771-2780(2018).
[28] Shamsi J, Dang Z Y, Bianchini P et al. Colloidal synthesis of quantum confined single crystal CsPbBr3 nanosheets with lateral size control up to the micrometer range[J]. Journal of the American Chemical Society, 138, 7240-7243(2016).
[29] Wang S, Yu J H, Zhang M Y et al. Stable, strongly emitting cesium lead bromide perovskite nanorods with high optical gain enabled by an intermediate monomer reservoir synthetic strategy[J]. Nano Letters, 19, 6315-6322(2019).
[31] Gong X W, Voznyy O, Jain A et al. Electron-phonon interaction in efficient perovskite blue emitters[J]. Nature Materials, 17, 550-556(2018).
[32] Wolf C, Lee T W. Exciton and lattice dynamics in low-temperature processable CsPbBr3 thin-films[J]. Materials Today Energy, 7, 199-207(2018).
[33] Wei K, Xu Z J, Chen R Z et al. Temperature-dependent excitonic photoluminescence excited by two-photon absorption in perovskite CsPbBr3 quantum dots[J]. Optics Letters, 41, 3821-3824(2016).
[34] Wright A D, Verdi C, Milot R L et al. Electron-phonon coupling in hybrid lead halide perovskites[J]. Nature Communications, 7, 11755(2016).
[35] Zhang X B, Taliercio T, Kolliakos S et al. Influence of electron-phonon interaction on the optical properties of III nitride semiconductors[J]. Journal of Physics: Condensed Matter, 13, 7053-7074(2001).
[36] Yakunin S, Protesescu L, Krieg F et al. Low-threshold amplified spontaneous emission and lasing from colloidal nanocrystals of caesium lead halide perovskites[J]. Nature Communications, 6, 8056(2015).
[37] Singh S, Li C, Panzer F et al. Effect of thermal and structural disorder on the electronic structure of hybrid perovskite semiconductor CH3NH3PbI3[J]. The Journal of Physical Chemistry Letters, 7, 3014-3021(2016).
Get Citation
Copy Citation Text
Shi Yueqing, Li Ruxue, Yu Jiahao, Wang Sheng, Yang Xuyong, Chen Rui. Synthesis and Stability of CsPbBr3 Perovskite Nanorods with High Optical Gain[J]. Chinese Journal of Lasers, 2020, 47(7): 701024
Special Issue:
Received: Jan. 16, 2020
Accepted: --
Published Online: Jul. 10, 2020
The Author Email: Rui Chen (chenr@sustech.edu.cn)