Citation:
HOU Chang-Jun, FAN Xiao-Hua, HUO Dan-Qun, DIAO Xian-Zhen, DONG Liang, TANG Yi-Ke, FAN Ying. The Stabilization Conditions of CTAB Reverse Microemulsion System and Preparation of WO3 Nanoparticles[J]. Chinese Journal of Applied Chemistry,
;2007, 24(4): 401-405.
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Pseudo-ternary phase diagrams of reverse microemulsion systems of cetyl trimethyl ammonium bromide(CTAB),n-butanol,n-octane and Na2WO4 solution were studied by measuring the conductivity of the system.The composition range of the reverse microemulsion system that existed stably under different conditions was investigated.WO3 nanoparticles were prepared under optimal conditions determined from the phase diagrams of the microemulsion systems.It was found that the ratio of surfactantaid to surfactant,and the concentration of Na2WO4 solution are two significant factors to affect the stability of the microemulsion system.When the ratio of m(CTAB):m(n-butanol) is 1:2 and the concentration of Na2WO4 solution is 0.05~0.08 g/mL,the microemulsion phase regions of the reverse microemulsion system that exists stably is bigger;when m(CTAB+n-butanol):m(n-octane) is 2:3,the system has the most quantity of dissolved water;and this system is insensitive to temperature.Under the optimal conditions,WO3 nanoparticles were prepared from the reaction of reverse microemulsion of Na2WO4 solution(0.08 g/mL) and hydrochloric acid reverse microemulsion at 40℃ for 7 h.The WO3 nanoparticles were characterized by TEM and the average particle size was about 30 nm.
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Keywords:
- microemulsion,
- stability,
- tungsten trioxide nanoparticle
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