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Gold nanoparticles-coated chemically-reactive polymer colloids and the study of their catalytic kinetics

机译:金纳米颗粒涂覆的化学反应性聚合物胶体和其催化动力学的研究

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Raspberry-like composite spheres based on chemically-reactive poly(glycidyl methacrylate) (PGMA) colloids as the cores coated with tunable size of gold nanoparticles were synthesized via a controlled assembly method. Kinetic study of 4-nitrophenol reduction by NaBH_4 in the presence of poly(allylamine hydrochloride)-modified PGMA composite with tunable size of AuNPs (PGMA@PAH@AuNPs) was demonstrated. Effects of gold nanoparticles size and PGMA colloid diameter on the reaction time, average reaction rate and average turnover frequency (TOF), order of reaction (n) and apparent rate constant (k_(app)) were systematically investigated. Experimental results of our study showed composites with 3.4 ± 0.9 nm AuNPs have the best catalytic efficiency with the highest reaction order and apparent rate constant. The poisoning of product 4-aminophenol on PAH-modified PGMA colloid-supported gold nanocatalysts was evaluated using 4-nitrophenol/NaBH_4 reduction reaction for the reaction time, average reaction rate, average TOF, order of reaction and apparent rate constant.
机译:覆盆子状基于化学反应性聚复合球体(甲基丙烯酸缩水甘油酯)(PGMA)胶体涂覆有金纳米颗粒的大小可调谐的岩心通过受控组件的方法合成。通过NaBH_4在聚的存在下4-硝基苯酚还原的动力学研究(烯丙胺盐酸盐)改性PGMA复合材料的AuNP的可调尺寸(PGMA @ PAH @的AuNP)证实。进行了系统的研究金纳米颗粒尺寸和胶体PGMA直径对反应时间,平均反应速率和平均转化频率(TOF),反应(n)的顺序和表观速率常数(K_(APP))的影响。与3.4±0.9纳米的AuNP我们的研究表明复合材料的实验结果具有最高的反应顺序和表观速率常数最好的催化效率。使用4-硝基苯酚产物4-氨基苯酚对PAH改性PGMA中毒胶体的负载型金纳米催化剂进行评价/对反应时间NaBH_4还原反应中,平均反应速率,平均TOF,反应和表观速率常数的顺序。

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