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The Role of Citric Acid Modifiers Addition in The Preparation of TiO_2 Nanoparticles with The Solvothermal Method

机译:柠檬酸改性剂加入在制备TiO_2纳米颗粒中的作用用溶剂热法

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In this study an investigation of solvothermal methods was carried out, using the precursor titanium butoxide in ethanol media, and using citric acid as a modifier. The modification of the modifier is done to ensure particle size and prevent TiO_2-NP aggregation, which is used as a capping agent and simultaneously as a dispersion of TiO_2-NP in the polymer matrix. The results of TiO_2-NP powder modified with citric acid (CA-TiO_2-P) were characterized by FTIR spectroscopy, UV-Vis DRS, SEM EDS, XRD, TEM, HR-TEM and SAED. Citric acid success to modify TiO2-NP is shown at FTIR spectrums at 2905 cm~(-1) and 2841 cm~(-1) which are stretching vibrations of C-H bonds in the methylene group (CH_2); and at 1374 cm~(-1) which is a vibration oscillation of the carboxylic group. The results of XRD characterization shows anatase phase, diffraction patterns from facet (101), (004), (200), (105) and (204). It was observed that the crystallite size of CA-TiO_2-NP was smaller than TiO_2-NP bare. This result is supported by of HRTEM and SAED characterization about d-spacing value. Photographs of TEM images show a range of particle sizes of 3-6 nm (CA-TiO_2) and 8-14 nm (TiO_2-NP bare). From the results of the characterization it can be concluded that the addition of citric acid modifier in the solvothermal method has succeeded in producing particle size control obtained by TiO_2-NP with smaller size and suitable morphology. Details of characterization and role modifiers will be discussed in this paper.
机译:在该研究中,使用乙醇介质中的前体钛丁基氧化物进行溶剂热方法的研究,并使用柠檬酸作为改性剂。改性剂的改性是为了确保粒度并防止TiO_2-NP聚集,其用作覆盖剂,并同时作为聚合物基质中TiO_2-NP的分散。用柠檬酸(CA-TiO_2-P)改性TiO_2-NP粉末的结果是通过FTIR光谱,UV-VIS DRS,SEM EDS,XRD,TEM,HR-TEM和SAED表征。在2905cm〜(-1)和2841cm〜(-1)的FTIR光谱下示出了修饰TiO2-NP的柠檬酸成功,其在亚甲基(CH_2)中的C-H键的拉伸振动;在1374cm〜(-1),这是羧基的振动振荡。 XRD表征的结果显示了锐钛矿相,来自小平面(101)的衍射图形,(004),(200),(105)和(204)。观察到Ca-TiO_2-NP的微晶尺寸小于TiO_2-NP裸露。该结果由HRTEM和SAED表征关于D-间距值支持。 TEM图像的照片显示3-6nm(Ca-TiO_2)和8-14nm(TiO_2-NP裸)的粒度范围。从表征的结果,可以得出结论,在溶剂热法中加入柠檬酸改性剂,成功地产生了通过TiO_2-NP获得的粒度对照,具有较小的尺寸和合适的形态。本文将讨论表征和角色修饰符的详细信息。

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