全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

钼酸盐材料合成方法综述
Review on Synthesis Methods of Molybdate Materials

DOI: 10.12677/MS.2022.1212147, PP. 1316-1325

Keywords: 钼酸盐,材料合成,水热法,共沉淀法,固相反应法,微波法,溶胶–凝胶法
Molybdate
, Material Synthesis, Hydrothermal Method, Co-Precipitation Method, Solid Phase Reaction Method, Microwave Method, Sol-Gel Method

Full-Text   Cite this paper   Add to My Lib

Abstract:

钼酸盐是一种用途广泛的功能材料,已广泛应用于光催化、荧光、防腐和负热膨胀等领域,其在未来的应用方向会更加宽广。本文综述了目前几种常用的钼酸盐制备方法,比较了不同制备方法的优缺点,为钼酸盐方向研究者提供了制备方法参考。
Molybdate is a widely used functional ma-terial, which has been widely used in the fields of photocatalysis, fluorescence, anticorrosion and negative thermal expansion, and its application direction will be broader in the future. In this paper, several commonly used preparation methods of molybdate were reviewed, and the advantages and disadvantages of different preparation methods were compared, which provided a reference for molybdate researchers.

References

[1]  Zhang, L.W., Xu, T.G., Zhao, X. and Zhu, Y.F. (2010) Controllable Synthesis of Bi2MoO6 and Effect of Morphology and Variation in Local Structure on Photocatalytic Activities. Applied Catalysis B, Environmental, 98, 138-146.
https://doi.org/10.1016/j.apcatb.2010.05.022
[2]  胡湘玉, 陈梦瑶, 刘志晶, 徐家广, 黄杰, 莫晓娟, 张放, 杨波, 张玲, 李君. Bi2MoO6/TiO2/GO光催化剂的制备及降解罗丹明B的性能研究[J]. 精细化工中间体, 2022, 52(2): 47-53.
https://doi.org/10.19342/j.cnki.issn.1009-9212.2022.02.012
[3]  张慧敏, 单展, 王宏, 张晓艳. 球状钼酸钙在可见光下选择性光催化降解废水中的抗生素[J]. 材料导报, 2022, 36(19): 64-70.
[4]  刘利, 韩真, 李勃, 陶吉寒. 钼酸钠和抑制剂钨酸钠对草莓幼苗氮代谢关键酶与~(15)N吸收利用的影响[J]. 山东农业科学, 2020, 52(6): 77-82.
https://doi.org/10.14083/j.issn.1001-4942.2020.06.013
[5]  李新玉, 方艳芬, 熊世威, 贾漫珂, 黄应平. 钼酸铋光催化剂的制备及其光催化活性[J]. 环境化学, 2013, 32(9): 1611-1618.
[6]  郑譞, 龚春丽, 刘海, 汪广进, 程凡, 郑根稳, 文胜, 熊传溪. 磷钼酸负载碳纳米管复合物的制备及其超级电容性能[J]. 无机材料学报, 2017, 32(2): 127-134.
[7]  张国有, 赵晓霞, 孟庆裕, 王晓君. 白光LED用红色荧光粉Gd2Mo3O9:Eu~(3+)的制备及表征[J]. 发光学报, 2007, 28(1): 57-61.
[8]  Phuruangrat, A., Keereesaensuk, P.-O., Karthik, K., et al. (2020) Synthesis of Ag/Bi2MoO6 Nanocomposites Using NaBH4 as Reducing Agent for Enhanced Visible-Light-Driven Pho-tocatalysis of Rhodamine B. Journal of Inorganic and Organometallic Polymers and Materials, 30, 322-329.
https://doi.org/10.1007/s10904-019-01190-4
[9]  林程涛, 陈婵, 林海, 单书峰, 曾兴业. 纳米片状钼酸铋的制备及其催化氧化脱硫性能研究[J]. 现代化工, 2022, 42(S2): 228-233+238.
https://doi.org/10.16606/j.cnki.issn0253-4320.2022.S2.045
[10]  程磊, 王志兴, 贺振江, 李新海, 郭华军. 不同制备方法对正极材料0.5Li2MnO3?0.5Li(Ni(1/3)Co(1/3)Mn(1/3))O2结构、形貌、电化学性能的影响[J]. 矿冶工程, 2014, 34(6): 123-127.
[11]  杜永芳, 高国雷. 钼酸铋纳米材料的制备及其光催化性能研究[J]. 安徽化工, 2021, 47(1): 38-42.
[12]  高唯, 吴婷, 程锴, 朱君江, 夏明桂. 一步水热法制备CuO空心球及其CO氧化性能的研究[J]. 应用化工, 2022, 51(9): 2565-2569.
https://doi.org/10.16581/j.cnki.issn1671-3206.2022.09.005
[13]  李若明, 杜慧玲, 刘俊. 纳米Bi2MoO6的水热法制备及光催化性能研究[J]. 人工晶体学报, 2016, 45(10): 2431-2435.
https://doi.org/10.16553/j.cnki.issn1000-985x.2016.10.014
[14]  孙青, 柯美林, 撒玉彪, 张俭, 严俊, 盛嘉伟. 水热法制备Bi2MoO6/埃洛石复合光催化剂及其性能研究[J]. 硅酸盐通报, 2020, 39(5): 1677-1680.
https://doi.org/10.16552/j.cnki.issn1001-1625.2020.05.045
[15]  李红花, 李坤威, 汪浩. α-Bi2Mo3O(12)和γ-Bi2MoO6的水热合成及可见光催化性能[J]. 无机化学学报, 2009, 25(3): 512-516.
[16]  Jotti, K., Octia, F., Puji, S.S., Afriyanti, S. and Ferry, I. (2022) Stable Layered-Layered-Spinel Structure of the Li1.2Ni0.13Co0.13Mn0.54O2 Cathode Synthesized by Ball-Milling Assisted Solid-State Method. Journal of Electroanalytical Chemistry, 907, Article ID: 116050.
https://doi.org/10.1016/j.jelechem.2022.116050
[17]  张涛, 穆冬迪, 欧阳艳, 何晓燕. 超声辅助共沉淀法合成CaMoO4:Eu~(3+)红色荧光粉及其发光性能研究[J]. 人工晶体学报, 2018, 47(1): 207-212.
https://doi.org/10.16553/j.cnki.issn1000-985x.2018.01.034
[18]  刘欣, 唐燕超, 刘芳, 李家科. 共沉淀法合成ZnMoO4粉体及其抗菌性能[J]. 人工晶体学报, 2021, 50(9): 1729-1734.
https://doi.org/10.16553/j.cnki.issn1000-985x.20210820.009
[19]  杜永芳, 宋继梅, 王红, 赵绍娟, 胡海琴. 共沉淀法制备α-Bi2Mo3O(12)和γ-Bi2MoO6及可见光催化性能[J]. 合肥工业大学学报(自然科学版), 2012, 35(11): 1500-1505.
[20]  Hariharasuthan, R., Chitradevi, S., Radha, K.S. and Chithambaram, V. (2022) Characterization of NiFe2O4 (Nickel Ferrite) Nanoparticles with Very Low Magnetic Saturation Synthesized via Co-Precipitation Method. Applied Physics A, 128, Article No. 1045.
https://doi.org/10.1007/s00339-022-06163-y
[21]  Oudghiri-Hassani, H. (2015) Synthesis, Characterization and Catalytic Performance of Iron Molybdate Fe2(MoO4)3 Nanoparticles. Catalysis Communications, 60, 19-22.
https://doi.org/10.1016/j.catcom.2014.11.019
[22]  Kong, L.-T., Zhang, M., Liu, X., et al. (2019) Green and Rapid Synthesis of Iron Molybdate Catalyst by Mechanochemistry and Their Catalytic Performance for the Oxidation of Methanol to Formaldehyde. Chemical Engineering Journal, 364, 390-400.
https://doi.org/10.1016/j.cej.2019.01.164
[23]  程丽红, 仲海洋, 孙佳石, 李香萍, 张金苏, 陈宝玖. Gd2(MoO4)3:Tb~(3+)荧光粉的固相合成与光谱性质[J]. 发光学报, 2011, 32(12): 1238-1242.
[24]  刘婧. 微波辅助法制备钼酸盐稀土上转换发光材料及表征[D]: [硕士学位论文]. 海口: 海南大学, 2015.
[25]  Sun, Y., Li, C.S., Wang, L.N., et al. (2011) Synthesis of SrMoO4 Microstructures by the Microwave Radiation-Assisted Chelating Agent Method. Crystal Research and Technology, 46, 973-978.
https://doi.org/10.1002/crat.201100173
[26]  Sun, Y., Li, C.S., Zhang, Z.J., et al. (2011) Persimmon-Like CaMoO4 Micro/Nanomaterials: A Rapid Microwave-Assisted Fabrica-tion, Characterization, and the Growth Mechanism. Solid State Sciences, 14, 219-224.
https://doi.org/10.1016/j.solidstatesciences.2011.11.015
[27]  Wang, L.N., Sun, Y., Li, C.S., et al. (2012) Mor-phology-Controlled CaMoO4 Nanorods via a Facile Microwave-Assisted EDTA Chelating Agent Process. Crystal Re-search and Technology, 47, 1231-1236.
https://doi.org/10.1002/crat.201200148
[28]  张莉, 汪鑫, 范维刚, 粟智. 溶胶凝胶法制备布洛芬表面分子印迹聚合物及其性能研究[J]. 日用化学工业, 2022, 52(5): 493-498.
[29]  Tian, C.A., Shao, L.B., Ji, D.D., et al. (2019) Synthesis and Characterization of Tungsten and Barium Co-Doped La2Mo2O9 by Sol-Gel Process for Solid Oxide Fuel Cells. Journal of Rare Earths, 37, 984-988.
https://doi.org/10.1016/j.jre.2018.12.013
[30]  Rashad, M.M., Ibrahim, A.A., Rayan, D.A., Sanad, M.M.S. and Helmy, I.M. (2017) Photo-Fenton-Like Degradation of Rhodamine B Dye from Waste Water Using Iron Molybdate Cat-alyst under Visible Light Irradiation. Environmental Nanotechnology, Monitoring & Management, 8, 175-186.
https://doi.org/10.1016/j.enmm.2017.07.009
[31]  沈敏. 新型钼酸盐晶体的可控制备及其光催化性能研究[D]: [博士学位论文]. 武汉: 华中农业大学, 2011.
[32]  刘漫红, 孙瑞雪, 肖海连, 等. 纳米材料及其制备技术[M]. 北京: 冶金工业出版社, 2014.
[33]  顾少轩, 雷丽文, 祝振奇, 郭丽玲. 材料的化学合成、制备与表征[M]. 武汉: 武汉理工大学出版社, 2016: 182.
[34]  赵世华. 发光纳米材料制备方法综述[J]. 化工新型材料, 2013, 41(11): 23-25.
[35]  马晓斌, 倪华良. 锂离子电池正极材料LiFePO4合成方法综述[J]. 当代化工, 2012, 41(10): 1059-1061.
https://doi.org/10.13840/j.cnki.cn21-1457/tq.2012.10.001
[36]  曹茂盛, 等. 材料合成与制备方法[M]. 哈尔滨: 哈尔滨工业大学出版社, 2018.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133