多动症多动症通过溶胶法对纳米纳米光质活动的影响

Sri Rahayu, P. Manurung, Roniyus Marjunus
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引用次数: 0

摘要

采用溶胶-凝胶法制备氟掺杂(F-TiO2)的二氧化钛。以异丙醇钛(TTIP)、吐温-80、异丙醇和氟化铵(NH4F)作为掺杂氟的主要原料。本研究旨在研究注射泵注入氟掺杂速率对F-TiO2光催化剂活性的影响。以0.4 ml / 30 min的渗透速率制备4个氟掺杂样品;0.4 ml / 60分钟;0.4 ml / 90分钟和0.4 ml / 120分钟。将二氧化钛粉末在450℃下煅烧5小时。对烧结后的样品在紫外光下进行了雷马唑黄的光降解试验。采用透射电子显微镜(TEM)和紫外-可见分光光度计对其物理特性进行了分析。紫外可见分光光度计结果表明,当注射速度为0.4 ml / 90 min时,样品的光催化活性较高,粒径为(14 nm±4 nm)。
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Pengaruh Laju Penginjeksian Doping Fluor terhadap Aktivitas Fotokatalis Nanotitania Menggunakan Metode Sol Gel
The titania synthesis of fluorine doping (F-TiO2) was carried out through the sol-gel method. Titanium isopropoxide (TTIP), tween-80, isopropanol and ammonium fluoride (NH4F) as sources of doping fluorine were used as the main ingredients. This research aimed to study the effect of fluorine doping injection rate using injection pumps on F-TiO2 photocatalyst activity. Four fluorine doping samples were prepared with the respective penetration rate of 0.4 ml / 30 minutes; 0.4 ml / 60 minutes; 0.4 ml / 90 minutes and 0.4 ml / 120 minutes. The titania powder was calcined at 450 oC for 5 hours. The sintered sample was tested for photodegradation of remazol yellow under UV light. Physical characteristics were analyzed using transmission electron microscopy (TEM) and Uv-Vis spectrophotometer. The results of the UV-Vis spectrophotometer showed that the particle size of samples with an injection rate of 0.4 ml / 90 minutes showed higher photocatalyst activity with particle sizes of (14 nm ± 4 nm).
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