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Effect of Sodium Dodecylbenzenesulfonate on Dispersion of SiO2 Nano-powder in Aqueous System

机译:十二烷基苯磺酸钠对水溶液中SiO2纳米粉末分散的影响

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Good dispersing stability is required for nano-SiO2 which,however,tends easily to conglomerate,to be widely applied as an important functional material of high toughness,high resistance to corrosion and good high-temperature performance.Through ultrasonic treatment,the suspension of SiO2 nano-powder in water was prepared utilizing sodium dodecylbenzenesulfonate (SDBS) as the dispersant.The effect of SDBS content and ultrasonic treatment time on the suspension stability was investigated by way of testing the particle size of SiO2 nano-powder,the Zeta potential and transmittance of the suspension.The results show that with increasing SDBS content,the particle size of SiO2 nanopowder decreases and then increases,which is similar to the case of increasing the ultrasonic treatment time.With optimum SDBS content,the suspension of SiO2 nano-powder possesses a good dispersing stability due to the existence of electrostatic and steric effects resulting from the particular structure of SDBS.The optimum dispersing condition is SDBS of 1.6 wt% with the ultrasonic time of 18 min.
机译:纳米SiO 2需要良好的分散稳定性,然而,易于结合的膨胀,以广泛应用于高韧性,高耐腐蚀性和良好的高温性能的重要功能材料。用超声波处理,SiO2的悬浮液利用十二烷基苯磺酸钠(SDB)作为分散剂制备水中的纳米粉末。通过测试SiO2纳米粉末,Zeta电位和透射率的粒度研究了SDB含量和超声处理时间对悬浮稳定性的影响结果表明,随着SDBS含量的增加,SiO2纳米粉末的粒度降低,然后增加,其类似于增加超声处理时间的情况。最佳SDBS含量,SiO2纳米粉末的悬浮液具有由于SDBS的特定结构导致的静电和空间效应,良好的分散稳定性。最佳分散条件为1.6wt%的SDB,超声时间为18分钟。

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