纳米In2S3制备研究进展

叶明富, 王苗苗, 牛文杰, 陈丙才, 陈国昌, 孔祥荣

化工新型材料 ›› 2019, Vol. 47 ›› Issue (9) : 45 -49.

PDF (1161KB)
化工新型材料 ›› 2019, Vol. 47 ›› Issue (9) : 45-49.
综述与专论

纳米In2S3制备研究进展

作者信息 +

Research progress in the preparation of In2S3 nanomaterial

Author information +
文章历史 +
PDF (1188K)

摘要

硫化铟(In2S3)是一种重要的半导体材料,具有良好的导电性能、光学性能、声学性能及电子性能等,在纳米材料、微电子和太阳能领域有广阔的发展前景。In2S3纳米材料的制备方法主要有水热合成法、溶剂热合成法、喷雾热解法和超声法等,未来应注重开发低成本、高性能、环保绿色的合成方法。

Abstract

Indium sulfide (In2S3),as an important semiconductor material,possesses excellent conductivity,optical,acoustic and electronic properties,which makes it have a wide range of potential applications in nanomaterials,microelectronics and solar energy fields.The preparation methods of In2S3 nanomaterials,including hydrothermal synthesis,solvothermal synthesis,spray pyrolysis method,ultrasonic method and so on were reviewed.And the development trend and prospects of the preparation of nano In2S3 were also proposed.

关键词

In2S3 / 纳米材料 / 溶剂热合成法 / 喷雾热解法

Key words

indium sulfide(In2S3) / nanomaterial / solvothermal synthesis / spray pyrolysis method

引用本文

引用格式 ▾
叶明富, 王苗苗, 牛文杰, 陈丙才, 陈国昌, 孔祥荣. 纳米In2S3制备研究进展[J]. 化工新型材料, 2019, 47(9): 45-49 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] 刘峰,逯亚飞,叶明富,等.硫化锑纳米材料制备研究进展[J].上海化工,2014,39(11):27-30.
[2] Datta A,MuKherjee D,Witanachchi S,et al.Low temperature synthesis,optical and photoconductance properties of nearly monodisperse thin In2S3 nanoplatelets[J].RSC Advances,2013,3(1):141-147.
[3] 邵绍峰,张贵军,周慧静,等.以氨基酸为晶体生长控制剂合成多级纳米结构的硫化铟空心微球[J].物理化学学报,2009,25(3):411-416.
[4] Shi Y,Yan Y L g,Fan R Q,et al.Self-assembled synthesis and surface photovoltage properties of polyhedron-constructed micrometer solid sphere and hollow-sphere In2S3[J].RSC Advances,2014,4(33):17245-17248.
[5] Gao W W,Liu W X,Leng Y H,et al.In2S3 nanomaterial as a broadand spectrum photocatalys to display significant activity[J].Applied Catalysis B:Environmental,2015,176-177:83-90.
[6] 覃利琴,庞起,梁春杰,等.In2S3纳米结构微球的水热制备及其发光性质[J].广西师范大学学报(自然科学版),2009,27(4):82-86.
[7] Zhao P T,Huang T,Huang K X.Fabrication of indium sulfide hollow spheres and their conversion to indium oxide hollow spheres consisting of multipore nanoflakes[J].Journal of Physical Chemistry C,2007,111(35):12890-12897.
[8] Deng D,Li W,Wang W W,et al.Fabrication of In2S3 film with octahedron structured via one-step hydrothermal method[J].Journal of Materials Science:Materials in Electronics,2014,25(12):5501-5504.
[9] Zhang L N,Zhang W,Yang H B,et al.Hydrothermal synthesis and photoelectrochemical properties of In2S3 thin films with a wedgelike structure[J].Applied Surface Science,2012,258(22):9018-9024.
[10] Jiang J Z,Zhou J,Zhang Y X,et al.A novel synthesis and characterization of 3D chrysanthemum-like β-In2S3 by surfactantfree hydrothermal method[J].Materials Letters,2012,79:132-135.
[11] Naik S D,Jagadale T C,Apte S K,et al.Rapid phase-controlled microwave synthesis of nanostructured hierarchical tetragonal and cubic β-In2S3 dandelion flowers[J].Chemical Physics Letters,2008,452(4/6):301-305.
[12] Liu G D,Jiao X L,Qin Z H,et al.Solvothermal preparation and visible photocatalytic activity of polycrystalline β-In2S3 nanotubes[J].Cryst Eng Comm,2011,13(1):182-187.
[13] Liu L J,Xiang W D,Zhong J S,et al.Flowerlike cubic β-In2S3 microspheres:synthesis and characterization[J].Journal of Alloys and Compounds,2010,493(1/2):309-313.
[14] 刘国栋,逄颖平,魏文静,等.硫化铟纳米棒的溶剂热合成及表征[J].济宁学院学报,2012,33(6):12-15.
[15] Xiong Y J,Xie Y,Du G A,et al.A solvent-reduction and surface-modification technique to morphology control of tetragonal In2S3 nanocrystals[J].Journal of Materials Chemistry,2002,12:98-102.
[16] Krainia M,Bouguila N,Halidou I,et al.Properties of In2O3 films obtained by thermal oxidation of sprayed In2S3[J].Materials Science in Semiconductor Processing,2013,16(6):1388-1396.
[17] Sall T,Soucase B M,Mollar M,et al.Chemical spray phrolysis of β-In2S3 thin films deposited at different temperatures[J].Journal of Physics and Chemistry of Solids,2015,76:100-104.
[18] Karber E,Otto K,Katerski A,et al.Raman spectroscopic study of In2S3 films prepared by spary pyrolysis[J].Materials Science in Semiconductor Processing,2014,25:137-142.
[19] 张啸,王华,许积文,等.衬底温度对In2S3薄膜结构及其性能的影响[J].人工晶体学报,2011,40(2):415-434.
[20] Hamideh A,Mehdi R,Mohammad A T.Synthesis and characterization of In2S3 nanostructures via ultrasonic method in the presence of thioglycolic acid[J].Journal of Industrial and Engineering Chemistry,2014,20(6):4321-4326.
[21] Gorai S,Chaudhuri S.Sonochemical synthesis and characterization of cage-like β-indium sulphide powder[J].Materials Chemistry and Physics,2005,89:332-335.
[22] Roy M,Mandal B P,Dutta D P,et al.A novel ultrasonic method for the preparation of a β-In2S3 nanorod in a CNT nanovessel[J].Scripta Materialia,2010,63(1):93-96.
[23] 陈雄飞,汪雷,杨德仁.超声喷雾法制备In2S3薄膜及后续快速热处理对薄膜性能的影响[J].人工晶体学报,2008,37(5):1069-1072.
[24] 陈惠欣,张晓燕,高静贤,等.不同结构、形貌In2S3纳米材料的离子热合成及表征[J].精细化工,2009,26(5):446-449.
[25] Chai B,Zeng P,Zhang X H,et al.Walnut-like In2S3 microspheres:ionic liquid-assisted solvothermal synthesis,characterization and formation mechanism[J].Nanoscale,2012,4(7):2372-2377.
[26] Patra C R,Patra S,Gabashvili A,et al.A microwave route for the synthesis of nanoflakes and dendrites-type β-In2S3 and their characterization[J].Journal of Nanoscience and Nanotechnology,2006,6(3):845-851.
[27] Gu Y,Wang Y.Microwave hydrothermal growth of In2S3 interconnected nanoflowers and nanoparticles on graphene for high-performance Li-ion batteries[J].RSC Advances,2014,4(17):8582-8589.
[28] Davoodi A,Maddahfar M,Ramezani M.Application of mercaptoacetic acid as a capping agent,solvent,and precurs or to fabricate In2S3 nanostructures[J].Journal of Industrial and Engineering Chemistry,2015,22:368-372.
[29] Zhong H Z,Ye M F,Zhou Y,et al.Synthesis of In2S3 nanoplates and their self-assembly into superlattices[J].Journal of Nanoscience and Nanotechnology,2007,7(12):4346-4352.
[30] 高志华,刘晶冰,汪浩.柠檬酸浓度对化学浴沉积硫化铟薄膜形成机理的影响研究[J].无机化学学报,2011,27(9):1685-1690.
[31] 王卫兵,刘平,李伟,等.化学水浴法制备In2S3薄膜的组织和性能研究[J].真空科学与技术学报,2013,33(5):402-407.
[32] 冯建,徐科.蓝色发光纳米硫化铟的合成及表征[J].应用化工,2013,42(10):1882-1888.

基金资助

安徽省自然科学基金项目(1608085QF156);安徽省大学生创新创业训练计划(201610360158,201610360159);纳米矿物材料及应用教育部工程研究中心开放基金(NGM2019KF028)

AI Summary AI Mindmap
PDF (1161KB)

889

访问

0

被引

导航
相关文章

AI思维导图

/