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Tuning the reduction power of visible-light photocatalysts of gold nanoparticles for selective reduction of nitroaromatics to azoxy-compounds—Tailoring the catalyst support

机译:调整金纳米颗粒的可见光光催化剂的减少功率以选择性降低硝基甲族化合物,对含氮化合物 - 剪裁催化剂载体

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摘要

AbstractududIt is a challenge to attain high selectivity to azoxy-compounds in the reduction of aromatic nitro compounds as azoxy-compounds can be readily reduced to azo- and aniline compounds. We proposed a new solution to this challenge: gold nanoparticles (AuNPs) on hydrotalcite (HT) support were used to catalyze the reduction under visible light irradiation at ambient temperature; and phosphate (PO4−) and metal (such as Ga+, Fe+, Zn+) ions were incorporated into the HT support to moderate the reduction power of the catalyst avoiding the formation of azo- and aniline compounds. Very high azoxy-compound selectivity was achieved under green mild conditions. The photocatalytic activity strongly depends on the incident light wavelength and intensity, and we can further enhance the catalytic efficiency of this photocatalytic process by slight increase in reaction temperature (e.g. 10–20 °C). Moreover, high stability and recyclability of the catalyst were also observed under the investigated conditions. A plausible reaction mechanism was proposed based on the experimental results and literatures. The introduction of both phosphate and metal ions into HT support can prevent the further reduction of azoxy-compounds to azo-compounds or anilines and achieve excellent selectivity to azoxy-compounds. This study reveals that we may engineer a product chemoselectivity by tailoring the supporting materials, and may present a new strategy towards the development of versatile heterogeneous photocatalysts.
机译:摘要 ud udit是在氧氧化合物中获得高选择性的挑战,因为偶氮化合物可以容易地还原成氮杂化合物和苯胺化合物。我们提出了新的这种挑战的解决方案:使用水滑石(HT)载体上的金纳米颗粒(AUNP)来催化在环境温度下可见光照射下的减少;将磷酸盐(PO4-)和金属(如Ga +,Fe +,Zn +)离子掺入HT载体中以适度降低催化剂的降低功率避免形成偶氮和苯胺化合物。在绿色温和条件下实现非常高的氮杂氧化合物选择性。光催化活性强烈取决于入射光波长和强度,我们可以通过轻微增加反应温度(例如10-20℃)来进一步提高该光催化过程的催化效率。此外,还在研究条件下观察到催化剂的高稳定性和可再循环性。提出了一种基于实验结果和文献的合理反应机制。将磷酸盐和金属离子引入HT载体可以防止进一步将偶氮化合物或苯胺的氮杂化合物还原并实现对偶氮化合物的优异选择性。本研究表明,我们可以通过剪裁配套材料来设计产品化学选择性,并且可能为多功能异质光催化剂发出新的策略。

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