• International Journal of Extreme Manufacturing
  • Vol. 5, Issue 4, 45001 (2023)
Wangqi Mao1,2, Haonan Li2, Bing Tang3, Chi Zhang4..., Liang Liu5, Pei Wang1, Hongxing Dong2,4,* and and Long Zhang1,2,4|Show fewer author(s)
Author Affiliations
  • 1Department of Optics and Optical Engineering, University of Science and Technology of China, Hefei, Anhui 230026, People’s Republic of China
  • 2Key Laboratory of Materials for High-Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, People’s Republic of China
  • 3Department of Materials Science and Engineering, and Centre for Functional Photonics (CFP), City University of Hong Kong, Hong Kong Special Administrative Region of China 999077, People’s Republic of China
  • 4School of Physics and Optoelectronic Engineering, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou, Zhejiang 310024, People’s Republic of China
  • 5Key Laboratory for Micro/Nano Physics and Technology of Hunan Province, State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Materials Science and Engineering, Hunan University, Changsha 410082, People’s Republic of China
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    DOI: 10.1088/2631-7990/acf2d0 Cite this Article
    Wangqi Mao, Haonan Li, Bing Tang, Chi Zhang, Liang Liu, Pei Wang, Hongxing Dong, and Long Zhang. Laser patterning of large-scale perovskite single-crystal-based arrays for single-mode laser displays[J]. International Journal of Extreme Manufacturing, 2023, 5(4): 45001 Copy Citation Text show less
    References

    [1] HuZ,LiuZZ,ZhanZ,ShiTC,DuJ,TangXSandLengYX 2021 Advances in metal halide perovskite lasers: synthetic strategies, morphology control, and lasing emission Adv. Photon. 3 034002

    [2] Sutherland B R and Sargent E H 2016 Perovskite photonic sources Nat. Photon. 10 295–302

    [3] Wang K Y, Wang S, Xiao S M and Song Q H 2018 Recent advances in perovskite micro-and nanolasers Adv. Opt. Mater. 6 1800278

    [4] Zhang Q, Diederichs C and Xiong Q H 2020 Golden hour for perovskite photonics Photonics Res. 8 1–PP4

    [5] ZhangQ,SuR,DuWN,LiuXF, ZhaoLY, HaSTand Xiong Q H 2017 Advances in small perovskite-based lasers Small Methods 1 1700163

    [6] LiZT, CaoK,LiJS,TangY, DingXRandYu BH2021 Review of blue perovskite light emitting diodes with optimization strategies for perovskite film and device structure Opto-Electron. Adv. 4 200019

    [7] Yan DD,ZhaoSY, ZhangYB,WangHX andZangZG 2022 Highly efficient emission and high-CRI warm white light-emitting diodes from ligand-modified CsPbBr3 quantum dots Opto-Electron. Adv. 5 200075

    [8] Zhang H B et al 2020 Lasing operation in the CsPbBr3 perovskite micron hemisphere cavity grown by chemical vapor deposition Chem. Eng. J. 389 124395

    [9] Tang B, Dong H X, Sun L X, Zheng W H, Wang Q, Sun F F, Jiang X W, Pan A L and Zhang L 2017 Single-mode lasers based on cesium lead halide perovskite submicron spheres ACS Nano 11 10681–8

    [10] Feng L, Wong Z J, Ma R M, Wang Y and Zhang X 2014 Single-mode laser by parity-time symmetry breaking Science 346 972–5

    [11] LiYJ,LvYC,ZouCL,ZhangW, Yao JNandZhaoYS 2016 Output coupling of perovskite lasers from embedded nanoscale plasmonic waveguides J. Am. Chem. Soc. 138 2122–5

    [12] ZhuHM,FuYP, MengF, Wu XX,GongZZ,DingQ, Gustafsson M V, Trinh M T, Jin S and Zhu X Y 2015 Lead halide perovskite nanowire lasers with low lasing thresholds and high quality factors Nat. Mater. 14 636–42

    [13] GengDC,WangHP, Wan Y, XuZP, LuoBR,XuJandYu G 2015 Direct top-down fabrication of large-area graphene arrays by an in situ etching method Adv. Mater. 27 4195–9

    [14] Naureen S, Shahid N, Sanatinia R and Anand S 2013 Top-down fabrication of high quality III–V nanostructures by monolayer controlled sculpting and simultaneous passivation Adv. Funct. Mater. 23 1620–7

    [15] Chen Y Q, Shu Z W, Zhang S, Zeng P, Liang H K, Zheng M J and Duan H G 2021 Sub-10 nm fabrication: methods and applications Int. J. Extrem. Manuf. 3 032002

    [16] Cegielski P J et al 2018 Monolithically integrated perovskite semiconductor lasers on silicon photonic chips by scalable top-down fabrication Nano Lett. 18 6915–23

    [17] Bar-On O, Brenner P, Lemmer U and Scheuer J 2018 Micro lasers by scalable lithography of metal-halide perovskites Adv. Mater. Technol. 3 1800212

    [18] Manser J S, Saidaminov M I, Christians J A, Bakr O M and Kamat P V 2016 Making and breaking of lead halide perovskites Acc. Chem. Res. 49 330–8

    [19] Alias M S, Yang Y, Ng T K, Dursun I, Shi D, Saidaminov M I, Priante D, Bakr O M and Ooi B S 2016 Enhanced etching, surface damage recovery, and submicron patterning of hybrid perovskites using a chemically gas-assisted focused-ion beam for subwavelength grating photonic applications J. Phys. Chem. Lett. 7 137–42

    [20] Alias M S, Dursun I, Shi D, Saidaminov M I, Diallo E M, Priante D, Ng T K, Bakr O M and Ooi B S 2015 Focused-ion beam patterning of organolead trihalide perovskite for subwavelength grating nanophotonic applications J. Vac. Sci. Technol. B 33 051207

    [21] Zhizhchenko A et al 2019 Single-mode lasing from imprinted halide-perovskite microdisks ACS Nano 13 4140–7

    [22] LiangLM,MaT, ChenZY, WangJX,HuJN,JiYC, Shen W L and Chen J 2023 Patterning technologies for metal halide perovskites: a review Adv. Mater. Technol. 8 2200419

    [23] Guo Y, Qiu P, Xu S L and Cheng G J 2022 Laser-induced microjet-assisted ablation for high-quality microfabrication Int. J. Extrem. Manuf. 4 035101

    [24] LiangSY, LiuYF, HuaJG,JiZKandXiaH2023 Femtosecond laser regulatory focus ablation patterning of a fluorescent film up to 1/10 of the scale of the diffraction limit Nanoscale 15 5494–8

    [25] LiangSY, LiuYF, ZhangHJ,JiZKandXiaH2022 High-quality patterning of CsPbBr3 perovskite films through lamination-assisted femtosecond laser ablation toward light-emitting diodes ACS Appl. Mater. Interfaces 14 46958–63

    [26] SunWZ,LiuYL,QuGY, Fan YB,DaiW, WangYH, Song Q H, Han J C and Xiao S M 2020 Lead halide perovskite vortex microlasers Nat. Commun. 11 4862

    [27] Wang Y, Li X M, Nalla V, Zeng H B and Sun H D 2017 Solution-processed low threshold vertical cavity surface emitting lasers from all-inorganic perovskite nanocrystals Adv. Funct. Mater. 27 1605088

    [28] Allegro I, Bonal V, Mamleyev E R, Villalvilla J M, Quintana J A, Jin Q H, Díaz-García M A and Lemmer U 2023 Distributed feedback lasers by thermal nanoimprint of perovskites using gelatin gratings ACS Appl. Mater. Interfaces 15 8436–45

    [29] Dong Q et al 2022 Cavity engineering of perovskite distributed feedback lasers ACS Photonics 9 3124–33

    [30] Zhang W et al 2015 Ultrasmooth organic-inorganic perovskite thin-film formation and crystallization for efficient planar heterojunction solar cells Nat. Commun. 6 6142

    [31] Doherty T A S et al 2020 Performance-limiting nanoscale trap clusters at grain junctions in halide perovskites Nature 580 360–6

    [32] Dong Q F, Fang Y J, Shao Y C, Mulligan P, Qiu J, Cao L and Huang J S 2015 Electron-hole diffusion lengths >175 μm in solution-grown CH3NH3PbI3 single crystals Science 347 967–70

    [33] Li L Y, Liu J X, Zeng M Q and Fu L 2021 Space-confined growth of metal halide perovskite crystal films Nano Res. 14 1609–24

    [34] Dunlap-Shohl W A, Zhou Y Y, Padture N P and Mitzi D B 2019 Synthetic approaches for halide perovskite thin films Chem. Rev. 119 3193–295

    [35] Zhang H J, Liu X, Dong J P, Yu H, Zhou C, Zhang B B, Xu Y D and Jie W Q 2017 Centimeter-sized inorganic lead halide perovskite CsPbBr3 crystals grown by an improved solution method Cryst. Growth Des. 17 6426–31

    [36] Jiang J et al 2019 Carrier lifetime enhancement in halide perovskite via remote epitaxy Nat. Commun. 10 4145

    [37] Zhou Y et al 2021 Millimeter-size all-inorganic perovskite crystalline thin film grown by chemical vapor deposition Adv. Funct. Mater. 31 2101058

    [38] Shoaib M et al 2017 Directional growth of ultralong CsPbBr3 perovskite nanowires for high-performance photodetectors J. Am. Chem. Soc. 139 15592–5

    [39] LiC,ZhaoLY, Fan H,ShangQY, DuWN,ShiJW, ZhaoY, Liu X F and Zhang Q 2020 Graphoepitaxy of large scale, highly ordered CsPbBr3 nanowire array on muscovite mica (001) driven by surface reconstructed grooves Adv. Opt. Mater. 8 2000743

    [40] LiuGD,JiaST, WangJ,LiYF, YangH,WangSF and Gong Q H 2021 Toward microlasers with artificial structure based on single-crystal ultrathin perovskite films Nano Lett. 21 8650–6

    [41] Yang Y D, Tang M, Wang F L, Xiao Z X, Xiao J L and Huang Y Z 2019 Whispering-gallery mode hexagonal micro-/nanocavity lasers [Invited]Photon. Res. 7 594–607

    [42] LiuW, LiZX,ShiZL,WangR,ZhuYZandXuCX2021 Nano-buffer controlled electron tunneling to regulate heterojunctional interface emission Opto-Electron. Adv. 4 200064

    [43] Zheng Y, Wu Z F, Shum P P, Xu Z L, Keiser G, Humbert G, Zhang H L, Zeng S W and Dinh X Q 2018 Sensing and lasing applications of whispering gallery mode microresonators Opto-Electron. Adv. 1 180015

    [44] Wang K, Liang J, Chen R, Gao Z H, Zhang C, Yan Y L, Yao J N and Zhao Y S 2021 Geometry-programmable perovskite microlaser patterns for two-dimensional optical encryption Nano Lett. 21 6792–9

    [45] LuJF et al 2019 Dynamic regulating of single-mode lasing in ZnO microcavity by piezoelectric effect Mater. Today 24 33–40

    [46] Samuel I D W, Namdas E B and Turnbull G A 2009 How to recognize lasing Nat. Photon. 3 546–9

    [47] Fu Y P, Zhu H M, Stoumpos C C, Ding Q, Wang J, Kanatzidis M G, Zhu X Y and Jin S 2016 Broad wavelength tunable robust lasing from single-crystal nanowires of cesium lead halide perovskites (CsPbX3, X = Cl, Br, I) ACS Nano 10 7963–72

    [48] Wang R Y, Muhammad Y, Xu X, Ran M, Zhang Q F, ZhongJC, Zhuge F W, Li HQ, Gan LandZhai T Y 2020 Facilitating all-inorganic halide perovskites fabrication in confined-space deposition Small Methods 4 2000102

    [49] LiuAQ,GuanGY, ChaiXM,FengNN,Lu M,BaiXand Zhang Y 2022 Metal halide perovskites toward electrically pumped lasers Laser Photon. Rev. 16 2200189

    Wangqi Mao, Haonan Li, Bing Tang, Chi Zhang, Liang Liu, Pei Wang, Hongxing Dong, and Long Zhang. Laser patterning of large-scale perovskite single-crystal-based arrays for single-mode laser displays[J]. International Journal of Extreme Manufacturing, 2023, 5(4): 45001
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