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首页> 外文期刊>Journal of Composites Science >Highly Crystalline Ordered Cu-dopedTiO2Nanostructure by Paper Templated Method Hydrogen Production and Dye Degradation under Natural Sunlight
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Highly Crystalline Ordered Cu-dopedTiO2Nanostructure by Paper Templated Method Hydrogen Production and Dye Degradation under Natural Sunlight

机译:通过纸张模板化方法氢气生产和染料降解自然阳光下的高度结晶有序的Cu-Dopedtio2Nanostruture

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A highly crystalline ordered Cu-TiO_(2) nanostructure was synthesized using a simple paper template method using cupric nitrate and titanium isopropoxide as precursors. The structural study by XRD confirmed the formation of highly crystalline anatase phase of Cu-TiO_(2). The broad diffraction peaks of Cu-TiO_(2) exhibit the nanocrystalline nature of the product. The optical study by UV-DRS indicated the red shift in absorption wavelength with an increase in Cu doping, i.e., towards the visible region. The FE-SEM and FE-TEM study validated the formation of spherical shaped nanoparticles of Cu-TiO_(2) having sizes in the range of 20–30 nm. Considering the absorption in the visible region, the photocatalytic study was performed for water splitting and rhodamine-B (RhB) dye degradation under natural sunlight. The 2% Cu-doped TiO_(2) showed the highest photocatalytic hydrogen evolution, i.e., 1400 μmol·g~(?1)·h~(?1) from water, among the prepared compositions. The photocatalytic performance of Cu-TiO_(2) conferred complete degradation of RhB dye within 40 min. The higher activity in both cases was attributed to the formation of highly crystalline ordered nanostructure of Cu-doped TiO_(2). This synthesis approach has potential to prepare other highly crystalline ordered nanostructured semiconductors for different applications.
机译:使用使用硝酸叔丁酯和钛等原子氧化物作为前体使用简单的纸模板方法合成高度结晶的Cu-TiO_(2)纳米结构。 XRD的结构研究证实了Cu-TiO_(2)的高度结晶锐钛矿相的形成。 Cu-TiO_(2)的宽衍射峰表现出产品的纳米晶体性质。 UV-DRS的光学研究表明了吸收波长的红色移位,随着Cu掺杂,即朝向可见区域而增加。 Fe-SEM和FE-TEM研究验证了在20-30nm范围内的尺寸的Cu-TiO_(2)的球形纳米颗粒的形成。考虑到可见区域中的吸收,对自然阳光下的水分裂和罗丹明-B(RHB)染料降解进行光催化研究。 2%Cu掺杂TiO_(2)显示出最高的光催化氢进化,即从水中的1400μmol·g〜(α1)·h〜(α1)中,在制备的组合物中。 Cu-TiO_(2)的光催化性能在40分钟内赋予RHB染料的完全降解。两种情况下的较高活性归因于Cu掺杂TiO_(2)的高结晶有序纳米结构的形成。该合成方法具有适用于不同应用的其他高晶有序的纳米结构半导体。

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