Inorganic Chemicals Industry ›› 2023, Vol. 55 ›› Issue (2): 36-44.doi: 10.19964/j.issn.1006-4990.2022-0109
• Reviews and Special Topics • Previous Articles Next Articles
LI Hongyuan1,2(),HARI Bala1,2(
)
Received:
2022-03-11
Online:
2023-02-10
Published:
2023-02-16
Contact:
HARI Bala
E-mail:lhy18839132130@163.com;hari@hpu.edu.cn
CLC Number:
LI Hongyuan,HARI Bala. Research progress of preparation and photocatalytic application of metal halide perovskite quantum dots[J]. Inorganic Chemicals Industry, 2023, 55(2): 36-44.
1 | FUJISHIMA A, HONDA K.Electrochemical photolysis of water at a semiconductor electrode[J].Nature,1972,238(5358):37-38. |
2 | HISATOMI T, DOMEN K.Reaction systems for solar hydrogen production via water splitting with particulate semiconductor photocatalysts[J].Nature Catalysis,2019,2(5):387-399. |
3 | LI Xubing, TUNG C H, WU Lizhu.Semiconducting quantum dots for artificial photosynthesis[J].Nature Reviews Chemistry,2018,2(8):160-173. |
4 | LIAO Guangfu, GONG Yan, ZHANG Li,et al.Semiconductor polymeric graphitic carbon nitride photocatalysts:The “holy grail” for the photocatalytic hydrogen evolution reaction under visible li-ght[J].Energy & Environmental Science,2019,12(7):2080-2147. |
5 | 郭宇,李燕瑞,王成名,等.TiO2/石墨烯复合材料的光生电荷分离调控与光催化产氢性能研究[J].化学学报,2019,77(6):520-524. |
GUO Yu, LI Yanrui, WANG Chengming,et al.Photogenerated charge separation and photocatalytic hydrogen production of TiO2/graphene composite materials[J].Acta Chimica Sinica,2019,77(6):520-524. | |
6 | WINNERL J, KRAUT M, ARTMEIER S,et al.Selectively grown GaN nanowalls and nanogrids for photocatalysis:Growth and optical properties[J].Nanoscale,2019,11(10):4578-4584. |
7 |
YU Shan, FAN Xiangbing, WANG Xian,et al.Efficient photocatalytic hydrogen evolution with ligand engineered all-inorganic InP and InP/ZnS colloidal quantum dots[J].Nature Communications,2018,9.Doi:10.1038/s41467-018-06294-y .
doi: 10.1038/s41467-018-06294-y |
8 | SUBUDHI S, RATH D, PARIDA K M.A mechanistic approach towards the photocatalytic organic transformations over functionalised metal organic frameworks:A review[J].Catalysis Science & Technology,2018,8(3):679-696. |
9 | 刘玉成,郑啸,黄培强.光催化氧化还原体系中硝酮与芳香叔胺的自由基偶联反应[J].化学学报,2019,77(9):850-855. |
LIU Yucheng, ZHENG Xiao, HUANG PeiQiang.Photoredox catalysis for the coupling reaction of nitrones with aromatic tertiary amines[J].Acta Chimica Sinica,2019,77(9):850-855. | |
10 | CHENG Ziyong, LIN Jun.Layered organic-inorganic hybrid pero-vskites:Structure,optical properties,film preparation,patterning and templating engineering[J].CrystEngComm,2010,12(10):2646-2662. |
11 | ABDI-JALEBI M, PAZOKI M, PHILIPPE B,et al.Dedoping of lead halide perovskites incorporating monovalent cations[J].ACS Nano,2018,12(7):7301-7311. |
12 |
D′INNOCENZO V, GRANCINI G, ALCOCER M J P,et al.Excitons versus free charges in organo-lead tri-halide perovskites[J].Nature Communications,2014,5.Doi:10.1038/ncomms4586 .
doi: 10.1038/ncomms4586 |
13 |
CHEN Zhaolai, DONG Qingfeng, LIU Ye,et al.Thin single crystal perovskite solar cells to harvest below-bandgap light absorption[J].Nature Communications,2017,8.Doi:10.1038/s41467-017-02039-5 .
doi: 10.1038/s41467-017-02039-5 |
14 |
JIANG Qi, ZHANG Liuqi, WANG Haolin,et al.Enhanced electron extraction using SnO2 for high-efficiency planar-structure HC(NH2)2PbI3-based perovskite solar cells[J].Nature Energy, 2017,2.Doi:10.1038/nenergy.2016.177 .
doi: 10.1038/nenergy.2016.177 |
15 | LI Sijia, DING Huaiyi, CAI Hongbing,et al.Realizing CsPbBr3 light-emitting diode arrays based on PDMS template confined solution growth of single-crystalline perovskite[J].The Journal of Physical Chemistry Letters,2020,11(19):8275-8282. |
16 |
FERNANDEZ-IZQUIERDO L, REYES-BANDA M G,MATHEWX,et al.Cesium lead bromide(CsPbBr3) thin-film-based solid-state neutron detector developed by a solution-free sublimation process[J].Advanced Materials Technologies,2020,5(12).Doi:10.1002/admt.202000534 .
doi: 10.1002/admt.202000534 |
17 |
JIANG Linlin, PENG Yong, XIANG Tianxing,et al.A counter electrode modified with renewable carbonized biomass for an all-inorganic CsPbBr3 perovskite solar cell[J].Journal of Alloys and Compounds,2022,902.Doi:10.1016/j.jallcom.2022.163725 .
doi: 10.1016/j.jallcom.2022.163725 |
18 | ZHANG Canran, DUAN Junjie, QIN Feifei,et al.CsPbBr3 interconnected microwire structure:Temperature-related photoluminescence properties and its lasing action[J].Journal of Materials Chemistry C,2019,7(34):10454-10459. |
19 | KOJIMA A, TESHIMA K, SHIRAI Y,et al.Organometal halide perovskites as visible-light sensitizers for photovoltaic cells[J].Journal of the American Chemical Society,2009,131(17):6050-6051. |
20 | MIN H, LEE D Y, KIM J,et al.Perovskite solar cells with atomically coherent interlayers on SnO2 electrodes[J].Nature,2021,598(7881):444-450. |
21 | MACEICZYK R M, DÜMBGEN K, LIGNOS I,et al.Microfluidic reactors provide preparative and mechanistic insights into the synthesis of formamidinium lead halide perovskite nanocryst-als[J].Chemistry of Materials,2017,29(19):8433-8439. |
22 | PROTESESCU L, YAKUNIN S, BODNARCHUK M I,et al.Nanocrystals of cesium lead halide perovskites(CsPbX3,X=Cl,Br,and I):Novel optoelectronic materials showing bright emission with wide color gamut[J].Nano Letters,2015,15(6):3692-3696. |
23 | ZHANG Feng, ZHONG Haizheng, CHEN Cheng,et al.Brightly luminescent and color-tunable colloidal CH3NH3PbX3(X=Br,I,Cl) quantum dots:Potential alternatives for display technolo- gy[J].ACS Nano,2015,9(4):4533-4542. |
24 | LI Xiaoming, WU Ye, ZHANG Shengli,et al.CsPbX3 quantum dots for lighting and displays:Room-temperature synthesis,photoluminescence superiorities,underlying origins and white light-emitting diodes[J].Advanced Functional Materials,2016,26(15):2435-2445. |
25 | SHAMSI J, RASTOGI P, CALIGIURI V,et al.Bright-emitting perovskite films by large-scale synthesis and photoinduced solid-state transformation of CsPbBr3 nanoplatelets[J].ACS Nano,2017,11(10):10206-10213. |
26 |
CHEN Min, ZOU Yatao, WU Linzhong,et al.Solvothermal synthesis of high-quality all-inorganic cesium lead halide perovskite nanocrystals:From nanocube to ultrathin nanowire[J].Advanced Functional Materials,2017,27(23).Doi:10.1002/adfm. 201701121 .
doi: 10.1002/adfm. 201701121 |
27 | CHEN Daqin, FANG Gaoliang, CHEN Xiao,et al.Mn-Doped CsPbCl3 perovskite nanocrystals:Solvothermal synthesis,dual-color luminescence and improved stability[J].Journal of Materials Chemistry C,2018,6(33):8990-8998. |
28 | LONG Zi, REN Hong, SUN Jianghui,et al.High-throughput and tunable synthesis of colloidal CsPbX3 perovskite nanocrystals in a heterogeneous system by microwave irradiation[J].Chemical Communications,2017,53(71):9914-9917. |
29 | PAN Qi, HU Huicheng, ZOU Yatao,et al.Microwave-assisted synthesis of high-quality “all-inorganic”CsPbX3(X=Cl,Br,I) perovskite nanocrystals and their application in light emitting diodes[J].Journal of Materials Chemistry C,2017,5(42):10947-10954. |
30 | TONG Yu, BLADT E, AYGÜLER M F,et al.Highly luminescent cesium lead halide perovskite nanocrystals with tunable composition and thickness by ultrasonication[J].Angewandte Chemie International Edition,2016,55(44):13887-13892. |
31 | TONG Yu, BOHN B J, BLADT E,et al.From precursor powders to CsPbX3 perovskite nanowires:One-pot synthesis,growth mech-anism,and oriented self-assembly[J].Angewandte Chemie International Edition,2017,56(44):13887-13892. |
32 | NEDELCU G, PROTESESCU L, YAKUNIN S,et al.Fast anion-exchange in highly luminescent nanocrystals of cesium lead halide perovskites(CsPbX3,X=Cl,Br,I)[J].Nano Letters,2015,15(8):5635-5640. |
33 | LIGNOS I, STAVRAKIS S, NEDELCU G,et al.Synthesis of cesium lead halide perovskite nanocrystals in a droplet-based microfluidic platform:Fast parametric space mapping[J].Nano Letters,2016,16(3):1869-1877. |
34 | ZHANG Dandan, YANG Yiming, BEKENSTEIN Y,et al.Synthesis of composition tunable and highly luminescent cesium lead halide nanowires through anion-exchange reactions[J].Journal of the American Chemical Society,2016,138(23):7236-7239. |
35 |
PARK S, CHANG W J, LEE C W,et al.Photocatalytic hydrogen generation from hydriodic acid using methylammonium lead iodide in dynamic equilibrium with aqueous solution[J].Nature Energy,2017,2.Doi:10.1038/nenergy.2016.185 .
doi: 10.1038/nenergy.2016.185 |
36 |
XIAO Mu, HAO Mengmeng, Miaoqiang LYU,et al.Surface ligands stabilized lead halide perovskite quantum dot photocatalyst for visible light-driven hydrogen generation[J].Advanced Functional Materials,2019,29(48).Doi:10.1002/adfm.201905683 .
doi: 10.1002/adfm.201905683 |
37 |
WU Yaqiang, WANG Peng, ZHU Xianglin,et al.Composite of CH3NH3PbI3 with reduced graphene oxide as a highly efficient and stable visible-light photocatalyst for hydrogen evolution in aqueous HI solution[J].Advanced Materials,2018,30(7).Doi:10.1002/adma.201704342 .
doi: 10.1002/adma.201704342 |
38 | SONG Wentao, WANG Yiming, WANG Cheng,et al.Photocatalytic hydrogen production by stable CsPbBr3@PANI nanoparticles in aqueous solution[J].ChemCatChem,2021,13(7):1711-1716. |
39 |
DING Ling, SHEN Chenyang, ZHAO Yi,et al.CsPbBr3 nanocrystals glass facilitated with Zn ions for photocatalytic hydrogen production via H2O splitting[J].Molecular Catalysis,2020,483.Doi:10.1016/j.mcat.2020.110764 .
doi: 10.1016/j.mcat.2020.110764 |
40 | XU Yangfan, YANG Muzi, CHEN Baixue,et al.A CsPbBr3 perovskite quantum dot/graphene oxide composite for photocatalytic CO2 reduction[J].Journal of the American Chemical Society,2017,139(16):5660-5663. |
41 | HOU Jungang, CAO Shuyan, WU Yunzhen,et al.Inorganic colloidal perovskite quantum dots for robust solar CO2 reduction[J].Chemistry-A European Journal,2017,23(40):9481-9485. |
42 | XU Yangfan, YANG Muzi, CHEN Hongyan,et al.Enhanced solar-driven gaseous CO2 conversion by CsPbBr3 nanocrystal/Pd nano-sheet Schottky-junction photocatalyst[J].ACS Applied Energy Materials,2018,1(9):5083-5089. |
43 | JIANG Yong, LIAO Jinfeng, XU Yangfan,et al.Hierarchical CsPbBr3 nanocrystal-decorated ZnO nanowire/macroporous graphene hybrids for enhancing charge separation and photocatalytic CO2 reduction[J].Journal of Materials Chemistry A,2019,7(22):13762-13769. |
44 | Man OU, TU Wenguang, YIN Shengming,et al.Amino-assisted anchoring of CsPbBr3 perovskite quantum dots on porous g-C3N4 for enhanced photocatalytic CO2 reduction[J].Angewandte Chemie,2018,130(41):13758-13762. |
45 | PAN Aizhao, MA Xiaoqin, HUANG Shengying,et al.CsPbBr3 perovskite nanocrystal grown on MXene nanosheets for enhanced photoelectric detection and photocatalytic CO2 reduction[J].The Journal of Physical Chemistry Letters,2019,10(21):6590-6597. |
46 |
XU Yangfan, WANG Xudong, LIAO Jinfeng,et al.Amorphous-TiO2-encapsulated CsPbBr3 nanocrystal composite photocatalyst with enhanced charge separation and CO2 fixation[J].Advanced Materials Interfaces,2018,5(22).Doi:10.1002/admi.201801015 .
doi: 10.1002/admi.201801015 |
47 | WAN Shipeng, Man OU, ZHONG Qin,et al.Perovskite-type CsPbBr3 quantum dots/UiO-66(NH2) nanojunction as efficient visible-light-driven photocatalyst for CO2 reduction[J].Chemical Engineering Journal,2019,358:1287-1295. |
48 | KONG Zicheng, LIAO Jinfeng, DONG Yujie,et al.Core@Shell CsPbBr3@Zeolitic imidazolate framework nanocomposite for efficient photocatalytic CO2 reduction[J].ACS Energy Letters, 2018,3(11):2656-2662. |
49 | WU Liyuan, MU Yanfei, GUO Xiaoxuan,et al.Encapsulating perovskite quantum dots in iron-based metal-organic frameworks(MOFs) for efficient photocatalytic CO2 reduction[J].Angewandte Chemie International Edition,2019,58(28):9491-9495. |
50 | FAN Qiangwen, ZHU Longwei, LI Xuhuai,et al.Visible-light pho-tocatalytic selective oxidation of amine and sulfide with CsPbBr 3 as photocatalyst[J].New Journal of Chemistry,2021,45(30):13317-13322. |
51 | HUANG Haowei, YUAN Haifeng, JANSSEN K P F,et al.Efficient and selective photocatalytic oxidation of benzylic alcohols with hybrid organic-inorganic perovskite materials[J].ACS Energy Letters,2018,3(4):755-759. |
52 |
LI Xin, ZHANG Taiyang, WANG Tian,et al.Recent progress of photocatalysis based on metal halide perovskites[J].Acta Chimica Sinica,2019,77(11).Doi:10.6023/a19080292 .
doi: 10.6023/a19080292 |
53 | WU Wenbin, WONG Y C, TAN Zhikuang,et al.Photo-induced thiol coupling and C-H activation using nanocrystalline lead-halide perovskite catalysts[J].Catalysis Science & Technology,2018,8(16):4257-4263. |
54 | CARDENAS-MORCOSO D, GUALDRÓN-REYES A F, FERREIRA VITORETI A B,et al.Photocatalytic and photoelectrochemical degradation of organic compounds with all-inorganic metal halide perovskite quantum dots[J].The Journal of Physical Chemistry Letters,2019,10(3):630-636. |
55 |
ZHAO Yanyan, SHI Huanxian, HU Xiaoyun,et al.Fabricating CsPbX3/CN heterostructures with enhanced photocatalytic activity for penicillins 6-APA degradation[J].Chemical Engineering Journal,2020,381.Doi:10.1016/j.cej.2019.122692 .
doi: 10.1016/j.cej.2019.122692 |
56 | GAO Ge, XI Qiaoyue, ZHOU Hua,et al.Novel inorganic perovs-kite quantum dots for photocatalysis[J].Nanoscale,2017,9(33):12032-12038. |
57 | ZHAO Yanyan, WANG Yongbo, LIANG Xuhua,et al.Enhanced photocatalytic activity of Ag-CsPbBr3/CN composite for broad spectrum photocatalytic degradation of cephalosporin antibiotics 7-ACA[J].Applied Catalysis B:Environmental,2019,247:57-69. |
[1] | ZHANG Feigang, LIU Zhongli. Study on application of CuO/g-C3N4 composites in organic dye degradation and supercapacitors [J]. Inorganic Chemicals Industry, 2025, 57(1): 129-136. |
[2] | SHI Mengke, FAN Zhaoya, YUE Feng, ZHANG Shuo, MENG Yang, ZHANG Hongzhong. Study on electro-assisted photocatalytic high selective conversion of CO2 in air [J]. Inorganic Chemicals Industry, 2024, 56(9): 154-163. |
[3] | ZHANG Lijie, LI Degang, HAN Wenyuan, XU Huijun, ZHANG Weimin, YU Chen. Preparation of phosphorus-doped carbon quantum dots and activation of peroxymonosulfate for degradation of methylene blue [J]. Inorganic Chemicals Industry, 2024, 56(1): 126-133. |
[4] | MA Bingxiang,SHEN Yunxia,LI Na,LI Min,WEI Yaoyi,ZHAO Yu. Effect of sulfate on photocatalytic activity of polymerized carbon nitride [J]. Inorganic Chemicals Industry, 2022, 54(9): 150-157. |
[5] | SONG Zhi, LIU Boxia, CHEN Yaoyao. Study on synthesis of FeWO4/WO3 complex by sol-gel and degradation of textile dye wastewater [J]. Inorganic Chemicals Industry, 2022, 54(5): 131-137. |
[6] | WANG Xin,XUE Dongfeng. Preparation of oxynitrides photocatalysts by the oriented transformation strategy [J]. Inorganic Chemicals Industry, 2022, 54(3): 1-6. |
[7] | WANG Xiaohuan,LI Shenghao,SHI Zhiming,WANG Jun,XINBA Yaer,LIU Liang. Research status of FeTiO3 materials [J]. Inorganic Chemicals Industry, 2022, 54(1): 12-17. |
[8] | Zheng Wei,Hou Fang,Gao Xiping. Preparation of BaFe2O4/BaSO4 composite photocatalyst and study on the photocatalytic activity of degrading rhodamine B wastewater discharged from food processing plant [J]. Inorganic Chemicals Industry, 2021, 53(7): 113-118. |
[9] | Wang Chenxin,Chen Meili,Tian Mengkui,Yang Wanliang. Study on preparation of hollow α-Fe2O3 nanobelts and their photocatalytic properties [J]. Inorganic Chemicals Industry, 2021, 53(6): 185-189. |
[10] | Zhang Lan,Tan Haolei,Ma Huizhong,Luo Aoxiang,Wang Jiping. Study on preparation and photocatalytic performance of nano-TiO2 films co-doped with nickel and carbon [J]. Inorganic Chemicals Industry, 2021, 53(4): 107-111. |
[11] | Shu Yirui,Zhang Pan,Wang Wei,Xiang Hengli,Ren Genkuan,Xu Dehua,Zhang Zhiye,Yang Xiushan. Titanium white by-product ferrous sulfate photofenton oxidation degradation of methyl orange in wastewater [J]. Inorganic Chemicals Industry, 2021, 53(3): 68-72. |
[12] | Chen Qingchun,Bang Yu,Wan Wenjie,Yan Lean,Deng Huiyu. Preparation and photocatalytic degradation property of cadmium hydroxide transformed from cadmium carbonate [J]. Inorganic Chemicals Industry, 2020, 52(4): 96-99. |
[13] | Hu Min,Guo Jia,Wu Huadong,Zhang Linfeng. Photocatalytic oxidation of sodium sulfite in desulfurization wastewater by N-Zn/TiO2 [J]. Inorganic Chemicals Industry, 2020, 52(10): 151-156. |
[14] | Xiao Yan. Progress in research and application of inorganic catalytic materials [J]. Inorganic Chemicals Industry, 2020, 52(10): 44-54. |
[15] | Kuang Yi,Li Jun,Jin Yang,Chen Ming,Zuo Longtao. Synthesis of nano-sized zinc oxide in liquid phase and its photocatalytic properties [J]. Inorganic Chemicals Industry, 2019, 51(9): 40-44. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
|
Copyright © 2021 Editorial Office of Inorganic Chemicals Industry
Add:No.3 Road Dingzigu,Hongqiao District,Tianjin,China
E-mail:book@wjygy.com.cn 违法和不良信息举报电话: 022-26689297