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Synthesis of gold nanoparticles supported at graphene derivatives using green reductants and evaluation of their catalytic activity in 4-nitrophenol reduction

机译:利用绿色还原剂合成石墨烯衍生物负载的金纳米颗粒及其在4-硝基苯酚还原中的催化活性评价

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In this study, gold nanoparticles were supported at graphene derivatives (AuNPs@GDs) from chloroauric acid and graphene oxide (GO) by using sodium citrate, L-ascorbic acid, and 4-(2-hydroxyethyl)-1-piperazineethane-sulfonic acid (HEPES) as green reductants to evaluate the catalytic activity in the 4-nitrophenol (4-NP) reduction system. Among the three reductants, HEPES which derived AuNP@GD (3) exhibited up to 8.44-fold higher catalytic activity compared with sodium citrate and L-ascorbic acid. To evaluate the influence of mass ratio between Au and GO on the catalytic activity, we controlled adding amounts of chloroauric acid while the other conditions using HEPES were fixed. Notably, decreasing the mass ratio of Au/GO from 0.59 to 0.10 increased the rate constant in the range of 7.6 × 10~(-3) to 16.1 × 10~(-3) /s. However, when the turnover frequency (TOF) was considered, the maximum value was obtained when Au/GO was 0.39. It can be concluded that AuNPs@GD (4) synthesized using HEPES significantly improved the catalytic activity in both rate constant (10.4 × 10~(-3) /s) and TOF (8.08 × 10~(-5) mol/g·s) in 4-NP reduction. These results suggest that the type of reductants used to synthesize AuNPs@GDs is a significant factor on the catalytic activity and that GO can help increase the catalytic activity, but has an effective ratio with Au.
机译:本研究以柠檬酸钠、L-抗坏血酸和4-(2-羟乙基)-1-哌嗪乙烷磺酸(HEPES)为绿色还原剂,以氯金酸和氧化石墨烯(GO)为载体,以金纳米颗粒为AuNPs@GDs载体,以4-硝基苯酚(4-NP)还原体系中的催化活性为研究对象。在三种还原剂中,衍生AuNP@GD(3)的HEPES的催化活性是柠檬酸钠和L-抗坏血酸的8.44倍。为了评估Au和GO质量比对催化活性的影响,我们控制了氯金酸的添加量,而使用HEPES的其他条件是固定的。值得注意的是,将Au/GO的质量比从0.59降低到0.10,速率常数在7.6×10~(-3)到16.1×10~(-3)/s。然而,当考虑周转频率(TOF)时,当Au/GO为0.39时,获得最大值。结果表明,HEPES合成的AuNPs@GD(4)在速率常数(10.4 × 10~(-3) /s)和TOF(8.08 × 10~(-5) mol/g·s)4-NP还原中均显著提高了催化活性。这些结果表明,用于合成AuNPs@GDs的还原剂类型是影响催化活性的重要因素,GO可以帮助提高催化活性,但与Au具有有效比。

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