Optimization of process parameters and its effect on particle size and morphology of ZnO nanoparticle synthesized by sol-gel method

被引:17
|
作者
Dutta, Debasish [1 ]
机构
[1] Narula Inst Technol, Dept Mech Engn, Kolkata, India
关键词
Nanoparticle; Sol-gel method; Morphology; X-ray diffraction; Taguchi design; TAGUCHI ROBUST DESIGN; GROWTH;
D O I
10.1007/s10971-015-3827-9
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In the present work, a systematic basic research has been performed for finding out the effect of various process parameters viz. molar ratio of zinc sulfate and sodium hydroxide, reaction time and calcination temperature on size and morphology of ZnO nanoparticles synthesized using zinc sulfate as a precursor by sol-gel method. Taguchi design method, ANOVA and regression analysis were used to find out the effect of various process parameters on the response in terms of narrow particle size distribution and crystal size. Characterization was done to find out the response such as particle size distribution and crystal size by using TEM and XRD. Results revealed molar ratio of 1:2, and calcination temperature of 700 A degrees C could significantly form uniform-sized spherical ZnO nanoparticles (85 nm) with narrow size distribution. However, significant increase in crystal size of ZnO nanoparticles was observed with increase in calcination temperature from 300 to 700 A degrees C. This may be primarily due to governing of higher diffusion rate at high temperature which resulted in enhanced growth rate of ZnO crystals.
引用
收藏
页码:48 / 56
页数:9
相关论文
共 50 条
  • [41] The Effect of Temperature on Grain Size of SnO2 Nanoparticles Synthesized by Sol-Gel Method
    Kose, H.
    Aydin, A. O.
    Akbulut, H.
    ACTA PHYSICA POLONICA A, 2014, 125 (02) : 345 - 347
  • [42] Effect of reaction conditions on size and morphology of SiO2 powder in a sol-gel process
    Chang, YW
    Kim, WS
    Kim, WS
    KOREAN JOURNAL OF CHEMICAL ENGINEERING, 1996, 13 (05) : 496 - 502
  • [43] Morphology evolution of ZrB2 nanoparticles synthesized by sol-gel method
    Zhang, Yun
    Li, Ruixing
    Jiang, Yanshan
    Zhao, Bin
    Duan, Huiping
    Li, Junping
    Feng, Zhihai
    JOURNAL OF SOLID STATE CHEMISTRY, 2011, 184 (08) : 2047 - 2052
  • [44] Effect of solvent medium on the structural, morphological and optical properties of ZnO nanoparticles synthesized by the sol-gel method
    Ungula, J.
    Dejene, B. F.
    PHYSICA B-CONDENSED MATTER, 2016, 480 : 26 - 30
  • [45] The effect of ZnO cupping layer on the formation of sol-gel synthesized Ag nanoparticles
    Sokura, L. A.
    Kremleva, A., V
    Romanov, A. E.
    MATERIALS PHYSICS AND MECHANICS, 2023, 51 (04): : 76 - 84
  • [46] The effect of Mn2+ doping on strcuture and photoluminescence of ZnO nanofilms synthesized by sol-gel method
    Li, J. H.
    Shen, D. Z.
    Zhang, J. Y.
    Zhao, D. X.
    Li, B. S.
    Lu, Y. M.
    Liu, Y. C.
    Fan, X. W.
    JOURNAL OF LUMINESCENCE, 2007, 122 (352-354) : 352 - 354
  • [47] The effect of sol-gel process on the microstructure and particle size of ZrC-SiC composite powders
    Zeng, Chen
    Tong, Kai
    Zhang, Mingyu
    Huang, Qizhong
    Su, Zhean
    Yang, Cheng
    Wang, Xiaodong
    Wang, Yafeng
    Song, Weijie
    CERAMICS INTERNATIONAL, 2020, 46 (04) : 5244 - 5251
  • [48] Effect of sol-gel preparation method on particle morphology in pure and nanocomposite PZT thin films
    Brunckova, Helena
    Medvecky, L'ubomir
    Hvizdos, Pavol
    CHEMICAL PAPERS, 2011, 65 (05) : 682 - 690
  • [49] Effect of sol-gel preparation method on particle morphology in pure and nanocomposite PZT thin films
    Helena Bruncková
    Ľubomír Medvecký
    Pavol Hvizdoš
    Chemical Papers, 2011, 65 : 682 - 690
  • [50] Understanding the interplay of solution and process parameters on the physico-chemical properties of ZnO nanofibers synthesized by sol-gel electrospinning
    Prabhu, Niranjan N.
    Rajendra, B., V
    Anandhan, S.
    Murthy, Krishna
    Chandra, R. B. Jagadeesh
    George, Gibin
    Kumar, B. Sachin
    Shivamurthy, B.
    MATERIALS RESEARCH EXPRESS, 2023, 10 (08)