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Nanosized TiO2Photocatalyst Powder via Sol-Gel Method: Effect of Hydrolysis Degree on Powder Properties

机译:纳米型TiO2光催化剂通过溶胶 - 凝胶法:水解程度对粉末性能的影响

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摘要

Nanosized TiO2 powder was synthesized via sol-gel method using titanium tetraisopoxide (TPT) as the precursor. Mol ratios of water to TPT were varied from 1 (Powder A), 2 (Powder B), 3 (Powder C), and 4 (Powder D) to evaluate effect of hydrolysis degree. TG/DTA curves showed that amorphous phase turned to anatase crystal structure at ca. 415, 337, 310, and 339∘C for Powders A, B, C, and D, respectively. XRD analysis showed that all the synthesized TiO2 powders were 100% in anatase form with Powders B and C showing considerably higher crystallinities. The powders obtained at lower water to TPT mol ratios were spherical in shape and they became bar-like shapes higher mol ratios. The lower hydrolysis degree led to higher surface area of the Powder A (24.8 m2/g) compared to Powder B (14.6 m2/g). From phenol photocatalytic measurement, Powder B was the most efficient attributed to its higher crystallinity.
机译:纳米化TiO2粉末通过使用钛氧化钛(TPT)作为前体合成溶胶 - 凝胶法。将水与TPT的MOL比率从1(粉末A),2(粉末B),3(粉末C)和4(粉末D)不同,以评估水解程度的效果。 TG / DTA曲线表明,无定形相转向CA的锐钛矿晶体结构。用于粉末A,B,C和D的415,337,310和339℃。 XRD分析表明,所有合成的TiO2粉末在锐钛矿形式中为100%,粉末B和C显示出相当高的晶体。在较低水中获得至TPT摩尔比在较低水中的粉末形状是球形,并且它们变成了杆状形状更高的摩尔比。与粉末B(14.6m 2 / g)相比,较低的水解度LED对粉末A(24.8m2 / g)的较高表面积。从酚光催化测量中,粉末B是最有效的,归因于其较高的结晶度。

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    Nor Hafizah; Iis Sopyan;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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