不同纳米材料的制备方法及其应用前景展望

梁平1, 夏梓文1, 冯扬1, 杨伟业1,2, 彭鸿雁1,2, 赵世华1,2*

化工新型材料 ›› 2024, Vol. 52 ›› Issue (8) : 1 -7.

PDF
化工新型材料 ›› 2024, Vol. 52 ›› Issue (8) : 1-7. DOI: 10.19817/j.cnki.issn1006-3536.2024.08.046
综述与专论

不同纳米材料的制备方法及其应用前景展望

    梁平1, 夏梓文1, 冯扬1, 杨伟业1,2, 彭鸿雁1,2, 赵世华1,2*
作者信息 +

Preparation methods of different nanomaterials and prospects for their application

  • Liang Ping1, Xia Ziwen1, Feng Yang1, Yang Weiye1,2, Peng Hongyan1,2, Zhao Shihua1,2
Author information +
文章历史 +
PDF

摘要

纳米材料具有特殊的物理、化学、电子和光学等特性,因此在诸多领域有着较为广泛的应用。综述了不同纳米材料的10种典型制备方法,介绍了各种制备方法的优缺点和纳米材料最新的研究进展。随着制备方法的不断创新,合成技术将会更加绿色、高效、可控和多功能化。今后的纳米科技将在能源、医疗、环境监测和先进制造等多个领域发挥重要作用,希望能对纳米材料的绿色合成和应用研究提供帮助。

Abstract

Nanomaterials have special physical,chemical,electronic and optical properties,and therefore have a wide range of applications in many fields.In this paper,ten typical preparation methods of different nanomaterials were reviewed,and the advantages and disadvantages of various preparation methods and the latest research progress of nanomaterials were introduced.With the continuous innovation of preparation methods,the synthesis technology will be more green,efficient,controllable and multifunctional.In the future,nanotechnology will play an important role in many fields such as energy,medicine,environmental monitoring and advanced manufacturing.We hope that this paper can help the research on green synthesis and application of nanomaterials.

关键词

纳米材料 / 制备方法 / 综述 / 模板法 / 水热法

Key words

nanomaterials / preparation method / review / template method / hydrothermal method

引用本文

引用格式 ▾
不同纳米材料的制备方法及其应用前景展望[J]. 化工新型材料, 2024, 52(8): 1-7 DOI:10.19817/j.cnki.issn1006-3536.2024.08.046

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Bautista-Gutierrez Karla P,Herrera-May Agustín L,Santamaría-López Jesús M,et al.Recent progress in nanomaterials for modern concrete infrastructure:advantages and challenges[J].Materials,2019,12(21):3548.
[2] Uddin M N,Nageshkar V V,Asmatulu R.Improving water-splitting effificiency of water electrolysis process via highly conductive nanomaterials at lower voltages[J].Energy,Ecology and Environment,2020,5:108-117.
[3] Song Changqing,Yin Chuan,Qu Huiwen.Electronic microstructure and thermal conductivity modeling of semiconductor nanomaterials[J].Microelectronics Journal,2021,108:104988.
[4] Thiagarajan Vignesh,Alex Sruthi Ann,Seenivasan R,et al.Interactive effects of micro/nanoplastics and nanomaterials/pharmaceuticals:their ecotoxicological consequences in the aquatic systems[J].Aquatic Toxicology,2021,232:105747.
[5] Yang Xi,Gao Ling,Guo Qing,et al.Nanomaterials for radiotherapeutics-based multimodal synergistic cancer therapy[J].Nano Research,2020,13(10):2579-2594.
[6] 郑萌,陈亮,谢剑,等.无机钙钛矿纳米线太阳能电池的界面优化研究[J].电子元件与材料,2020,39(11):48-54.
[7] 詹洵,陈健,杨兆哲,等.纳米纤维素构建超疏水材料研究进展[J].化工进展,2022,41(8):4303-4313.
[8] 李小康,黄锐,余念,等.MoO3纳米线有序阵列在微流芯片中的Cd2+离子传感特性研究[J].电子元件与材料,2019,38(5):32-37.
[9] Taborowska Patrycja,Giewski Tomasz,Patmore Jeff,et al.Spun carbon nanotube fibres and films as an alternative to printed electronic components[J].Materials,2020,13(2):431.
[10] Toth Geza,Halonen Niina,Maklin Jani,et al.Thermal management of micro hotspots in electric components with carbon nanotubes[J].International Journal of Nanotechnology,2013,10(1/2):57-62.
[11] Gao Xiaoyong,Liu Xuwei,Wang Songyou,et al.Microstructure and optical properties of AgxO prepared by direct-current magnetron-Sputtering Method[J].Chinese Physics Letters,2008,25(4):1449-1452.
[12] Wang Wensheng,Fujii Tadashi,KarakiTomoaki,et al.Preparation and electrical properties of rhombohedral Pb(ZrxTi1-x)O3 thin films by RF magnetron sputtering method[J].Japanese Journal of Applied Physics,1999,38:6807-6811.
[13] Desa Nur Dayana Md,Duralim Maisarah.Gold-nanoparticle synthesization in gum arabic solution by pulsed laser ablation[J].Journal of Physics:Conference Series,2021,1892(1):012019.
[14] Liu Chunxiao,Zhang Jie,Lin Shebao,et al.Two-dimensional waveguides in magneto-optical glasses fabricated by carbon ion implantation and femtosecond laser ablation[J].Optics Communications,2021,495:127109.
[15] Chang Qing,Liang Hongsheng,Shi Bin,et al.Sodium oxalate-induced hydrothermal synthesis of wood-texturecolumn-like NiCo2O4 with broad bandwidth electromagnetic wave absorption performance[J].Journal of Colloid and Interface Science,2021,600(15):49-57.
[16] Ma Xiaoguang,Hu Fangzhen,Chen Xi,et al.Giant saturation absorption of tungsten trioxide film prepared based on the seedless layer hydrothermal method[J].Chinese Physics B,2023,32(3):034212.
[17] Baik Jeongmin,Lee Jonglam.Ferromagnetic properties of (Ga,Mn)N nanowires grown by a chemical vapor deposition method[J].Journal of Vacuum Science & Technology B,2005,23(21):530-533.
[18] Zhang Chunmei,Zheng Yanbin,Jiang Zhigang,et al.Effect of CO2 addition on preparation of diamond films by direct-current hot-cathode plasma chemical vapor deposition method[J].Chinese Physics Letters,2010,27(8):1-3.
[19] Zhong Yu,Yang Qi,Luo Kun,et al.Fe(Ⅱ)-Al(Ⅲ) layered double hydroxides prepared by ultrasound-assisted co-precipitation method for the reduction of bromate[J].Journal of Hazardous Materials,2013,250-251:345-353.
[20] Kripal Ram,Gupta Atul K,Mishra Sheo K,et al.Photoluminescence and photoconductivity of ZnS∶Mn2+ nanoparticles synthesized via co-precipitation method[J].Spectrochimica Acta Part A,2010,76(18):523-530.
[21] Khan Mohammad Ehtisham,Khan Mohammad Mansoob,Cho Moo Hwan.Environmentally sustainable biogenic fabrication of AuNP decorated-graphitic g-C3N4 nanostructures towards improved photoelectrochemical performances[J].Rsc Advances,2018,8(12):13898-13909.
[22] Moon Jiwon,Ivanov Ilia N,Duty Chad E,et al.Microbial approach to low-cost production of photovoltaic nanomaterials[J].ACS Sustainable Chemistry & Engineering,2019,7(22):18297-18302.
[23] 李旭,关丽,杨志平,等.蓝色荧光粉Sr2Al2SiO7∶Ce3+的制备与发光性能[J].硅酸盐报,2009,37(11):1919-1923.
[24] 马诗章,冯文林,彭志清.高温固相法制备K1-xGxSr4(BO3)3xPr3+荧光粉及其光致发光性质研究[J].光学学报,2017,37(5):1-6.
[25] 吴玄顺,曾惠丹,蒋奇.亚超细Y2O2S∶Er3+,Yb3+荧光粉的制备及其上转换发光特性[J].硅酸盐学报,2013,41(1):66-70.
[26] Jiang Xiaohuan,Duan Yingnan,Tian Yu,et al.Facile one-pot hydrothermal method to prepare Sn(Ⅱ) and N co-doped TiO2 photocatalyst for water splitting under visible light irradiation[J].Rare Metals,2021,41:406-414.
[27] Jung Kyunwon,Lee Seonyong,Choi Jaewoo,et al.Synthesis of Mg-Al layered double hydroxides-functionalized hydrochar composite via an in situ one-pot hydrothermal method for arsenate and phosphate removal:structural characterization and adsorption performance[J].Chemical Engineering Journal,2021,420:129775.
[28] Gao Shiyu,Wang Xi,Xu Nan,et al.From coconut petiole residues to flfluorescent carbon dots via a green hydrothermal method for Fe3+ detection[J].Cellulose,2021,28(9):1647-1661.
[29] Moloto Nosipho,Mpelane Siyasanga,Sikhwivhilu Lucky M,et al.Optical and morphological properties of ZnO- and TiO2-derived nanostructures synthesized via a microwave-assisted hydrothermal method[J].International Journal of Photoenergy,2012,DOI:10.37247/ADERES2EDN.2.2020.5.
[30] Wolska E,Witkowskia B S,Godlewski M.ZnO nanopowders by a microwave hydrothermal method-inflfluence of the precursor type on grain sizes[J].Acta Physica Polonica A,2011,119(5):683-685.
[31] Zhang Li,Qin Dezhi,Yang Guangrui,et al.The investigation on synthesis and optical properties of ZnS∶Co nanocrystals by using hydrothermal method[J].Chalcogenide Letters,2012,9(3):93-98.
[32] Boyle Timothy J,Yang Pin,Hattar Khalid,et al.Synthesis and characterization of solvothermal processed calcium tungstate nanomaterials from Alkoxide precursors[J].Chemistry of Materials,2014,26(16):965-975.
[33] Wang Meng,Zhao Bin,Xu Shaohong,et al.Synthesis of hierarchically structured ZnO nanomaterials via a supercritical assisted solvothermal process[J].Chemical Communications,2014,50(8):930-932.
[34] Peng Xiaoli,Wen Chong,Zhang Qian,et al.Efects of annealing on electrochemical properties of solvothermally synthesized Cu2SnS3 anode nanomaterials[J].Nanoscale Research Letters,2021,16(1):17.
[35] Hafifizah Nor,Sopyan Iis.Nanosized TiO2 photocatalyst powder via sol-gel method:effect of hydrolysis degree on powder properties[J].International Journal of Photoenergy,2009,DOI:10.1155/2009/962783.
[36] Gutiérrez-Climente Raquel,ClaviéMargaux,Dumy Pascal,et al.Sol-gel process:the inorganic approach in protein imprinting[J].Journal of Materials Chemistry B Review,2021,9(13):2155-2178.
[37] Xu Yao,Fan Wenhao,Li Zhihong,et al.Antireflective silica thin films with super water repellence via a solgel process[J].Applied Optics,2003,42(1):108-112.
[38] Lopez-Heredia Marco Antonio,Weiss P,Layrolle P.An electrodeposition method of calcium phosphate coatings on titanium alloy[J].Journal of Materials Science:Materials in Medicine,2007,18:381-390.
[39] 王信春,王广君,庞山,等.pH值对电沉积CuInSe2薄膜的组份、结构及光电性能的影响[J].无机化学学报,2011,27(12):2437-2442.
[40] Carranza Matías Ezequiel.Design of experiments in 241Am alpha source preparation by electrodeposition:an approach to process optimization[J].Journal of Radioanalytical and Nuclear Chemistry,2019,1007(10):1-21.
[41] Mahmood Rashid A,Radiah A B Dayang,Zurina Z A,et al.Low-temperature synthesis of carbon nanotubes via floating catalyst chemical vapor deposition method[J].Fullerenes Nanotubes and Carbon Nanostructures,2011,19(12):522-531.
[42] Aliabadi Ali,Hadavi Seyed Mohammad Mehdi,Eshraghi Mohamad Javad.Mechanistic investigation of aluminide coating formation by low-pressure chemical vapor deposition method on NiCoCrAlY coating in presence of nickel-ceria composite layer[J].Ramics International,2021,47(14):20051-20063.
[43] Hao Shuang,Zhang Tianqi,Fan Shengnan,et al.Preparation of COF-TpPa1 membranes by chemical vapor deposition method for separation of dyes[J].Chemical Engineering Journal,2021,421:129750.
[44] Aono Hiromichi,Hirazawa Hideyuki,Naohara Takashi,et al.Synthesis of fifine magnetite powder using reverse coprecipitation method and its heating properties by applying AC magnetic fifield[J].Materials Research Bulletin,2005,40(7):1126-1135.
[45] Zhao Shihua,Cai Huijian,Li Peng.Pure purple line and red line emissions of ZnO nanomaterials[J].Journal of Nanoscience and Nanotechnology,2016,16(7):7738-7741.
[46] Belwalkar A,Grasinga E,Van Geertruyden W,et al.Effect of processing parameters on pore structure and thickness of anodic aluminum oxide (AAO) tubular membranes[J].Journal of Membrane Science,2008,319(5):192-198.
[47] 孔超,庞海龙,胡中爱,等.模板法合成SrCeO4纳米线阵列[J].化工新型材料,2006,34(2):25-27.
[48] Saedi A,Ghorbani M.Electrodeposition of Ni-Fe-Co alloy nanowire in modifified AAO template[J].Materials Chemistry and Physics,2005,91(10):417-423.
[49] Zhao Shihua,Wang Lingling,Yang Lei,et al.Synthesis and luminescence properties of ZnO∶Tb3+ nanotube arrays via electrodeposited method[J].Physica B:Condensed Matter,2010,405(15):3200-3204.
[50] Zhao Shihua,Wang Lingling,Yang Lei,et al.Synthesis and ultraviolet luminescence properties of half-wall Al2O3 nanotube arrays[J].Journal of Physics D:Applied Physics,2009,42(22):225106.
[51] Yang Lei,She Yajuan,Zhao Shihua,et al.Synthesis and optical properties modulation of ZnO/Eu2O3 nanocable arrays[J].Journal of Applied Physics,2010,108(10):104301.
[52] Pourali P,Yahyaeia B,Afsharnezhad S.Bio-synthesis of gold nanoparticles by fusarium oxysporum and assessment of their conjugation possibility with two types of β-lactam antibiotics without any additional linkers1[J].Microbiology,2018,87(2):229-237.
[53] Sarafraz M M,Arya A,Nikkhah V,et al.Thermal performance and viscosity of biologically produced silver/coconut oil nanofluids[J].Chemical and Biochemical Engineering Quarterly,2016,30(4):489-500.
[54] Tuo Ya,Liu Guangfei,Dong Bin,et al.Microbial synthesis of Pd/Fe3O4,Au/Fe3O4 and PdAu/Fe3O4 nanocomposites for catalytic reduction of nitroaromatic compounds[J].Scientific Reports,2015,5:13515.

基金资助

国家自然科学基金(U1704145);海南省自然科学基金项目(522MS062);海南省高等学校教育教学改革研究项目(Hnjg2022-55);海南省高等学校教育教学改革研究重点项目(Hnjg2020ZD-17)

AI Summary AI Mindmap
PDF

1324

访问

0

被引

导航
相关文章

AI思维导图

/