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Infiltration of VOPcPhO into porous alumina template grown by in situ method

机译:通过原位方法渗透vopcpho进入多孔氧化铝模板的方法

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In this study, the fabrication of in situ anodic alumina template (AAO) directly onto glass substrate is realized by varying stirring speeds and molarity of phosphoric acid. Porous alumina template is used to infiltrate vanadyl 2,9,16,23-tetraphenoxy-29H,31H-phthalocyanine (VOPcPhO) prior to formation of the alumina: VOPcPhO nanocomposite. VOPcPhO was observed to fully infiltrate the template with excess formation of the VOPcPhO layer on top of the porous template after lengthy immersion of 6 h. Uniformity and density of pore size, and available pores, can be respectively tuned by varying the stirring speeds (0-300 rpm) and the molarity of the pore widening agent (0-10% of phosphoric acid). Rounded-sphere pore shapes observed with the higher transparency template were correlated with stirring speed at 100 and 200 rpm. At these speeds, the template's pore size and pore density are highly homogeneous. Changing molarity of phosphoric acid as a pore widening agent affected pore size and density. The occurrence of merging pores was observed upon increasing agent molarity to 10%, which was unlikely at the lower molarity of 5% phosphoric acid. Optical properties of alumina: VOPcPhO nanocomposites that were identified via characterization of UV-vis, photoluminescence (PL) and Raman spectroscopies support successful infiltration of VOPcPhO. Alumina: VOPcPhO nanocomposite has the ability to absorb light at longer wavelengths and photons are emitted by the nanocomposite at respective energies.
机译:在这项研究中,在原位阳极氧化铝模板(AAO)直接施加到玻璃基片的制造是通过改变搅拌速度和磷酸的摩尔浓度来实现。多孔氧化铝模板用来浸润氧钒2,9,16,23-四苯氧基-29H,31H-酞菁形成氧化铝的前(VOPcPhO):VOPcPhO纳米复合材料。 VOPcPhO观察到完全渗入与6小时冗长浸渍后在多孔模板的顶部过量形成VOPcPhO层的模板。均匀性和孔尺寸的密度,和可用的孔隙,可以通过改变搅拌速度(0-300 RPM)和孔扩大剂的摩尔浓度(磷酸的0〜10%)被分别调谐。具有较高透明度模板观察到圆形的球孔形状,在100和200rpm搅拌速度是相关的。在这些速度下,模板的孔径和孔密度是高度同质化。改变磷酸的摩尔浓度作为成孔剂加宽影响孔尺寸和密度。在增加剂摩尔浓度至10%,这是不太可能在5%磷酸的摩尔浓度下,观察到合并孔的发生。的氧化铝的光学特性:经由的UV-VIS表征鉴定出VOPcPhO纳米复合材料,光致发光(PL)和拉曼光谱支持VOPcPhO的成功渗入。氧化铝:VOPcPhO纳米复合材料具有在较长波长和光子被在各自的能量的纳米复合发射到吸收光的能力。

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