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Novel nano-composite particles : titania-coated silica cores

机译:新型纳米复合颗粒:二氧化钛包覆的二氧化硅核

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摘要

Purpose - The purpose of this paper is to develop methods to produce white composite pigments consisting of a silica core with a titania shell. Design/methodology/approach - Silica cores were coated with titanium dioxide (TiO2) via forced hydrolysis of a solution prepared from titanium tetrachloride (TiCl4). The morphology, surface charge and particle size of obtained composite particles were studied. Findings - Dispersions of well-dispersed composite particles, having silica cores of uniform size in the range from 300 to 500 nm with a homogeneous titania coating are obtained. The coating thickness corresponded to 150-400 per cent by weight of titania based on the core. Modification of the silica core by incorporation of 1.5 aluminosilicate sites per square nanometre of core surface proves to be favourable in achieving a homogeneous coating on the silica core. Deposition of such titania coating is also favoured by agitating the dispersion well, keeping electrolyte content low, maintaining pH at 2.0 and the temperature at 75 degrees C during the coating process. Research limitations/implications - Only TiCl4 is used as titania source. In addition, only silica cores obtained by Stober synthesis are used while commercially available silica solutions made from sodium silicate are not used. Practical implications - The process offers a method of producing a white composite pigment with a narrow particle size distribution in order to maximise light scattering as well as using a core with lower density than the shell. This kind of particle would be of interest for coating applications and white inorganic inks. Originality/value - The developed method provides a straightforward process to produce well-defined composite particles.
机译:目的-本文的目的是开发生产由二氧化硅芯和二氧化钛壳组成的白色复合颜料的方法。设计/方法/方法-通过强制水解由四氯化钛(TiCl4)制备的溶液,用二氧化钛(TiO2)包覆二氧化硅核。研究了所得复合颗粒的形貌,表面电荷和粒径。发现-获得分散均匀的复合颗粒的分散体,所述分散体具有均匀尺寸的二氧化钛涂层的,具有在300至500nm范围内的均匀尺寸的二氧化硅核。包衣厚度相当于基于芯的二氧化钛的150-400重量%。通过在芯表面的每平方纳米中掺入1.5个硅铝酸盐位点而对二氧化硅芯进行改性被证明有利于在二氧化硅芯上实现均匀的涂层。通过充分搅拌分散液,保持电解质含量低,在涂覆过程中保持pH值在2.0和温度在75摄氏度,也有利于这种二氧化钛涂层的沉积。研究限制/意义-仅将TiCl4用作二氧化钛来源。另外,仅使用通过Stober合成获得的二氧化硅核,而不使用由硅酸钠制成的可商购的二氧化硅溶液。实际意义-该方法提供了一种生产具有窄粒度分布的白色复合颜料的方法,以使光散射最大化,并使用密度比壳层低的核。对于涂料应用和白色无机油墨来说,这种颗粒将是人们感兴趣的。原创性/价值-所开发的方法提供了一种直接的过程来生产定义明确的复合粒子。

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