Preparation method for hierarchical hollow cubic stannic oxide nanometer particle
A nanoparticle and tin dioxide technology, applied in the direction of tin oxide, etc., can solve the problems of non-spherical tin dioxide preparation, difficult growth and design materials, lengthy preparation process, etc., and achieve low cost, low price and high chemical activity. Effect
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Embodiment 1
[0030] Weigh 17mg of ZnO, 240mg of NaOH, 292mg of CTAB and 210mg of SnCl 4 , then dissolve ZnO, NaOH, and CTAB with 25mL deionized water and stir for 5min, then dissolve SnCl with 5ml deionized water 4 , and then add the SnCl4 solution dropwise to the aqueous solution containing ZnO, NaOH, and CTAB, fully stir for 10 minutes and then let it stand for 24 hours, then stir the solution for 5 minutes and then transfer it to a hydrothermal reaction kettle, and conduct a hydrothermal reaction at 180°C for 12 hours. After the reaction, wash with deionized water and absolute ethanol for three times each, and then dry the precipitate at 60°C in an air atmosphere to collect hierarchical hollow cube-shaped tin dioxide nanoparticles composed of ultrafine nanorods. The scanned picture See attached figure 1 , the transmission scan picture is attached figure 2 .
[0031] The X-ray diffraction pattern of the hierarchical hollow cube-shaped tin dioxide nanoparticles composed of one-dimensi...
Embodiment 2
[0033] Weigh 17mg of ZnO, 240mg of NaOH, 292mg of CTAB and 210mg of SnCl 4 , then dissolve ZnO, NaOH, and CTAB with 25mL deionized water and stir for 5min, then dissolve SnCl with 5ml deionized water 4 , and then add the SnCl4 solution dropwise to the aqueous solution containing ZnO, NaOH, and CTAB, fully stir for 10 minutes and then let it stand for 24 hours, then stir the solution for 5 minutes and then transfer it to a hydrothermal reaction kettle, and conduct a hydrothermal reaction at 200 ° C for 12 hours. After the reaction was completed, each was washed with deionized water and absolute ethanol for three times, and then the precipitate was dried at 60°C in an air atmosphere to collect hierarchical hollow cube-shaped tin dioxide nanoparticles composed of a mixture of nanosheets and nanorods. The scanned picture is attached Figure 5 , the transmission scan picture is attached Image 6 .
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