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Gold nanoparticle decorated titania for sustainable environmental remediation: green synthesis, enhanced surface adsorption and synergistic photocatalysis

机译:黄金纳米粒子装饰泰坦尼亚可持续环境修复:绿色合成,增强表面吸附和协同光催化

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Developing materials for efficient environmental remediation via cheap, nontoxic and environmentally benign routes remains a challenge for the scientific community. Here, a novel, facile, and green synthetic approach to prepare gold nanoparticle decorated TiO _(2) (Au/TiO _(2) ) nanocomposites for sustainable environmental remediation is reported. The synthesis involved only TiO _(2) , metal precursor and green tea, obviating the need for any solvents and/or harsh chemical reducing or stabilizing agents, and was efficiently conducted at 50 °C, indicating the prominent sustainability of the novel synthetic approach. The synthesis indicated notable atom economy, akin to that observed in a typical chemical mediated synthesis while high-resolution transmission electron microscopy (HRTEM) findings suggest the presence of a pertinent decoration of spherical and homogeneous gold nanoparticles on the titania surface. Notably, the Au/TiO _(2) nanocomposite demonstrated appreciable stability during preparation, subsequent processing and prolonged storage. Further, the nanocomposite was found to have a superior adsorption capacity of 8185 mg g ~(?1) towards methylene blue (MB) in solution using the Freundlich isotherm model, while the rate constants for the photocatalytic degradation of MB on the nanocomposite under UV irradiation indicated a 4.2-fold improvement compared to that of bare TiO _(2) . Hence, this novel green synthesized Au/TiO _(2) nanocomposite shows promising potential for sustainable environmental remediation via efficient contaminant capture and subsequent synergistic photocatalysis.
机译:通过廉价,无毒和环境良性路线为高效环境修复的开发材料仍然是科学界的挑战。这里,报道了一种新颖的,容易和绿色的合成方法来制备金纳米颗粒装饰TiO _(2)(Au / TiO _(2))纳米复合材料,用于可持续的环境修复。该合成仅涉及TiO _(2),金属前体和绿茶,避免了任何溶剂和/或苛刻的化学还原剂或稳定剂,并在50℃下有效地进行,表明新颖的合成方法的突出可持续性。合成表示值得注意的原子经济,类似于在典型的化学介导的合成中观察到的,而高分辨率透射电子显微镜(HRTEM)发现表明在二氧化钛表面上存在具有均匀金纳米颗粒的具有相关装饰的存在。值得注意的是,Au / TiO _(2)纳米复合材料在制备期间表现出明显的稳定性,随后的加工和延长的储存。此外,使用Freundlich等温模型,发现纳米复合材料在溶液中朝向亚甲基蓝(MB)的优异吸附能力为8185mg g〜(α1),而UV下纳米复合材料的光催化降解MB的速率常数。与裸TIO _(2)相比,辐射表明了4.2倍的改善。因此,这种新型绿色合成的Au / TiO _(2)纳米复合材料显示了通过有效污染物捕获和随后的协同光催化的可持续环境修复的有希望的潜力。

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