会议论文详细信息
Quality in Research: International Symposium on Materials, Metallurgy, and Chemical Engineering
Synthesis and characterization of methyltrihydroxysilane water repellent
材料科学;冶金学;化学工业
Abidin, A.Z.^1 ; Harjandi, M.N.^1 ; Wirawan, V.^1 ; Suharno, S.M.^1
Department of Chemical Engineering, Faculty of Industrial Technology Institut Teknologi Bandung, Jl. Ganesha 10, Bandung
40132, Indonesia^1
关键词: Commercial products;    Dipcoating methods;    Reaction conditions;    Superhydrophobic materials;    Synthesis and characterizations;    Water repellency;    Water repellent materials;    Water repellents;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/316/1/012017/pdf
DOI  :  10.1088/1757-899X/316/1/012017
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

Methyltrihydroxysilane (CH3Si (OH)3) as a water repellent has been synthesized from trichloromethylsilane and ethanol by varying their composition, reaction condition, and the addition of nanosilica. The properties of the material have been characterized using FTIR for identification of raw materials and water repellent product, SEM for identification of water repellent coating surface, and tensiometer for measurement of water repellent contact angle. The FTIR spectra confirm the reaction of the water-repellent formation. The water repellent product was applied by spraying or dip coating on the automotive window surface. This study shows that the best ethanol composition is 91% and the best contact angle of synthesized water repellent material is 149,46°. This contact angle is higher than that of a commercial product, which shows it as a property of the superhydrophobic material. Water repellency properties increase as the composition of trichloromethylsilane increases. It shows that the increasing of trichloromethylsilane composition can also increase methyltrihydroxysilane formation. However, glass surface becomes opaque as the composition of trichloromethylsilane increase because methyltrihydroxysilane will create the Si-O-Si layer that has a white color. The addition of nanomaterial also increases the surface roughness, but a binder is required to bind nanomaterial to the water-repellent layer. For an application, dip coating has better water repellency than spraying. This is because dip coating method creates more homogenous nanomaterial precipitation on the surface. On the other hand, the level of transparency is worse. Therefore, the water repellent of trichloromethylsilane is recommended for applications that do not need clarity such bathroom glass wall.

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