• Acta Photonica Sinica
  • Vol. 49, Issue 1, 0123002 (2020)
Xi-sheng ZHANG, Chun-yu YAN, Ti-hui WU, Lin-feng LI..., Jun-hua GUO and Chen-zhong YAO|Show fewer author(s)
Author Affiliations
  • Department of Physics and Technology, Yuncheng University, Yuncheng, Shanxi 044000, China
  • show less
    DOI: 10.3788/gzxb20204901.0123002 Cite this Article
    Xi-sheng ZHANG, Chun-yu YAN, Ti-hui WU, Lin-feng LI, Jun-hua GUO, Chen-zhong YAO. Fabrication of CsPbBrI2 Quantum Dots and Its Photodetector Performance[J]. Acta Photonica Sinica, 2020, 49(1): 0123002 Copy Citation Text show less
    References

    [1] Wei DENG, Xiu-juan ZHANG, Li-ming HUANG. Aligned single crystalline perovskite microwire arrays for high-performance flexible image sensors with long-term stability. Advanced Materials, 28, 2201-2208(2016).

    [2] Ji-hyung JUNG, Min-ji YOON, Ju-Won LIM. Phototransistors:high-performance UV-Vis-NIR phototransistors based on single-crystalline organic semiconductor & ndash. Advanced Functional Materials, 27, 1604528(2016).

    [3] Zhi ZHENG, Lin GAN, Jian-bing ZHENG. Anenhanced UV-Vis-NIR and flexible photodetector based on electrospun ZnO nanowire array/PbS Quantum Dots Film Heterostructure. Advanced Science, 4, 1600316(2016).

    [4] Xi-sheng ZHANG, qian WANG, Zhi-wen JIN. Stable ultra-fast broad-bandwidth photodetectors based on α-CsPbI3 perovskite and NaYF4:Yb, Er quantum dots. Nanoscale, 9, 6278-6285(2017).

    [5] Gui CHEN, Bo LIANG, Xi LIU. High-performance hybrid phenyl-C61-butyric acid methyl ester/Cd(3)P(2) Nanowire ultraviolet-visible-near infrared photodetectors. ACS Nano, 8, 787-796(2014).

    [6] Zhi-min LIANG, Ping-yang ZENG, Peng-yi LIU. Interface engineering to boost photoresponse performance of self-powered, broad-bandwidth PEDOT:PSS/Si heterojunction photodetector. ACS Applied Materials & Interfaces, 8, 19158-19167(2016).

    [7] Qi JIANG, Liu-qi ZHANG, Hao-lin WANG. Enhanced electron extraction using SnO2 for high-efficiency planar-structure HC(NH2)2PbI3-based perovskite solar cells. Nature Energy, 1, 16177-16183(2016).

    [8] Yu-cheng LIU, Zhou YANG, Dong CUI. Two-Inch-Sized perovskite CH3NH3PbX3 (X=Cl, Br, I) crystals:growth and characterization. Advanced Materials, 27, 5176-5183(2015).

    [10] F BELLA, G GRIFFINI, J P CORREA-BAENA. , Improving efficiency and stability of perovskite solar cells with photocurable fluoropolymers. Science, 354, 203-206(2016).

    [11] Xiao-dong LI, Wen-xiao ZHANG, Ying-Chiao WANG. In-situ cross-linking strategy for efficient and operationally stable methylammoniun lead iodide solar cells. Nature Communications, 9, 3806-3815(2018).

    [12] Wan-yi NIE, J-C BLANCON, A J NEUKICH. Light-activated photocurrent degradation and self-healing in perovskite solar cells. Nature Communications, 7, 11574-11583(2016).

    [13] Yu-hui DONG, Yu GU, You-sheng ZOU. Improving all-inorganic perovskite photodetectors by preferred orientation and plasmonic effect. Small, 12, 5622-5632(2016).

    [14] J SONG, L XU, J LI. Monolayer and few-layer all-inorganic perovskites as a new family of two-dimensional semiconductors for printable optoelectronic devices. Advanced Materials, 28, 4861-4869(2016).

    [15] Bin-bin LUO, S B NAGHADEH, A L ALLEN. Peptide-passivated lead halide perovskite nanocrystals based on synergistic effect between amino and carboxylic functional groups. Advanced Functional Materials, 27, 1604018(2016).

    [16] G NEDELCU, L PROTESESCU, S YAKUNIN. Fast anion-exchange in highly luminescent nanocrystals of cesium lead halide perovskites (CsPbX3, X=Cl, Br, I). Nano Letters, 15, 5635-5640(2015).

    [17] Chien-yu CHEN, Hung-yu LIN, Kai-ming CHANG. Solar Cells:All-vacuum-deposited stoichiometrically balanced inorganic cesium lead halide perovskite solar cells with stabilized efficiency exceeding 11%. Advanced Materials, 29, 1605290(2017).

    [18] P RAMASAMY, D H LIM, B KIM. Stabilizing the cubic perovskite phase of CsPbI3 nanocrystals by using an alkyl phosphinic acid. Chemical Communications, 53, 2067-2070(2016).

    [19] S YAKUNIN, L PROTESESCU, F KRIEG. Low-threshold amplified spontaneous emission and lasing from colloidal nanocrystal of caesium lead halide perovskites. Nature Communications, 6, 8056-8065(2015).

    [20] Hai-hua ZHANG, Xu WANG, Qing LIAO. Embedding perovskite nanocrystals into a polymer matrix for tunable luminescence probes in cell imaging. Advanced Functional Materials, 27, 1604382(2017).

    [23] Jin-feng LIAO, Wen-guang LI, Hua-shang RAO. Dimension engineering on cesium lead iodide for efficient and stable perovskite solar cells. Journal of Materials Chemistry A, 5, 2066-2072(2017).

    [24] G E EPERON, G M PATEMO, R J SUTTON. Inorganic caesium lead iodide perovskite solar cells. Journal of Materials Chemistry A, 3, 19688-19695(2015).

    [25] Hui BIAN, Dong-liang BAI, Zhi-wen JIN. Graded bandgap CsPbI2Br-perovskite solar cells with a stabilized efficiency of 14.4%. Joule, 2, 1500-1510(2018).

    [26] C LIU, W LI, C ZHANG. All-inorganic CsPbI2Br perovskite solar cells with high efficiency exceeding 13%. Journal of the American Chemical Society, 140, 3825-3828(2018).

    [27] Jing-ru ZHANG, Dong-liang BAI, Zhi-wen JIN. 3D-2D-0D interface profiling for record efficiency all-inorganic CsPbBrI2 perovskite solar cells with superior stability. Advanced Energy Materials, 8, 1703246(2018).

    [28] X ZHANG, Y ZHOU, Y LI. Efficient andcarbon-based hole transport layer-free CsPbI2Br planar perovskite solar cells using PMMA modification. Journal of Materials Chemistry A, 7, 3852-3861(2019).

    [30] Xiao-ming LI, De-jian YU, Fei CAO. Healing all-inorganic perovskite films via recyclable dissolution-recyrstallization for compact and smooth carrier channels of optoelectronic devices with high stability. Advanced Functional Materials, 26, 5903-5912(2016).

    [31] Ji-zhong SONG, Lei-meng XU, Jian-hai LI. Monolayer and few-layer all-inorganic perovskites as a new family of two-dimensional semiconductors for printable optoelectronic Devices. Advanced Functional Materials, 28, 4861-4869(2016).

    [32] Cun-long LI, Ceng HAN, Yu-bo ZHANG. Enhanced photoresponse of self-powered perovskite photodetector based on ZnO nanoparticles decorated CsPbBr3 films. Solar Energy Materials & Solar Cells, 172, 341-346(2017).

    [33] Hua-rong XIA, Jia LI, Wen-tao SUN. Organohalide lead perovskite based photodetectors with much enhanced performance. Chemical Communication, 50, 13695-13697(2014).

    [34] E HORVATH, M SPINA, Z SZEKRENYES. Nanowires of methylammonium lead iodide (CH3NH3PbI3) prepared by low temperature solution-mediated crystallization. Nano Letters, 14, 6761-6766(2014).

    [35] Hui DENG, Xiao-kun YANG, Dong-dong DONG. Flexible and semitransparent organolead triiodide perovskite network photodetector arrays with high stability. Nano Letters, 15, 7963-7969(2015).

    Xi-sheng ZHANG, Chun-yu YAN, Ti-hui WU, Lin-feng LI, Jun-hua GUO, Chen-zhong YAO. Fabrication of CsPbBrI2 Quantum Dots and Its Photodetector Performance[J]. Acta Photonica Sinica, 2020, 49(1): 0123002
    Download Citation