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It is a stable colloidal solution formed by uniformly dispersing nanoscale silica (SiO2) particles in water, with the chemical formula mSiO2·nH2O; its pH ranges from 9 to 11, and the particle size is controllable. It boasts a large specific surface area and excellent adsorption properties, as well as good adhesion, high-temperature resistance, and superior hydrophilicity and oleophobicity.
It is a stable colloidal solution formed by the uniform dispersion of nanoscale silica (SiO₂) particles in water, with a chemical formula of mSiO₂·nH₂O. In acidic systems, the solution exhibits good stability within a pH range of 2.0–4.0; however, when the pH rises to 4.0–7.0, gelation becomes more pronounced.
It is a stable colloidal solution formed by the uniform dispersion of nanoscale silica (SiO2) particles in water, with a chemical formula of mSiO2·nH2O; its pH ranges from 6.0 to 8.0. This material boasts a large specific surface area and strong adsorption properties, along with excellent adhesion, superior high-temperature resistance, water resistance, and anti-slip performance.
Aluminum sol is a stable colloidal solution of nanoscale alumina (Al₂O₃) particles dispersed in water or an organic solvent, typically represented by the chemical formula Al₂O₃·nH₂O. It exhibits properties such as adhesiveness, thixotropy, easy dispersibility, suspensibility, positive charge, adsorption capability, and stability.