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Hybrid Hairy Janus Particles Decorated with Metallic Nanoparticles for Catalytic Applications

机译:金属纳米粒子修饰的杂化毛状Janus粒子在催化中的应用

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We report for the first time on the design of an advanced hairy hybrid Janus-type catalyst, which is comprised of an inorganic silica core covered with two distinct polymeric shells (hydrophilic and hydrophobic) on its opposite sides, while the catalytic species (in our case silver or gold nanoparticles) are immobilized directly into the hydrophilic stimuli-responsive polymer shell. The primary 200 nm large Janus particles with poly(acrylic acid) serving as the hydro, philic and polystyrene as the hydrophobic polymer were synthesized through a Pickering emulsion and a combination of "grafting from"/"grafting to" approaches. The incorporation of silver and gold nanoparticles within the hydrophilic polymer shell was achieved by infiltrating the respective metal ions into the polymer matrix, and nanoparticles were formed upon the addition of a reducing agent (triethylamine). Plasmon absorptions typical for silver and gold nanostructures were observed on the functionalized Janus particles using UV-vis spectroscopy. The respective systems were investigated by TEM and cryo-TEM revealing that the incorporated nanoparticles are selectively localized on the poly(acrylic acid) side of the Janus particles. The efficiency of the catalyst as well as the accessibility of the incorporated nanoparticles was tested on the reduction of Methylene Blue, Eosin Y, and 4-nitrophenol as convenient benchmark systems. Ultimately, the hairy Janus particles with immobilized Ag or Au nanoparticles efficiently catalyzed the respective reactions by applying extremely low amounts of catalyst. Finally, we demonstrated several advantages of the use of JPs with immobilized metallic nanoparticles, which are (i) JPs stabilize the emulsions, (ii) the emulsion can be destabilized by utilizing responsive properties of the JPs, and (iii) JPs can easily be recovered after reaction and reused again.
机译:我们首次报告了先进的多毛杂种Janus型催化剂的设计,该催化剂由一个无机二氧化硅核组成,在其相对两侧覆盖有两个不同的聚合物壳(亲水和疏水),而催化物种(在我们的产品中(如果是银或金纳米粒子)直接固定在亲水性刺激响应性聚合物外壳中。通过Pickering乳液和“接枝自” /“接枝至”方法的组合,合成了具有聚(丙烯酸)作为水,亲液和聚苯乙烯作为疏水性聚合物的200nm大的Janus初级颗粒。通过将相应的金属离子渗透到聚合物基质中,可以将银和金的纳米颗粒掺入亲水性聚合物壳中,并通过添加还原剂(三乙胺)形成纳米颗粒。使用紫外可见光谱在功能化的Janus颗粒上观察到了银和金纳米结构的典型等离子体吸收。通过TEM和冷冻TEM研究了各自的系统,揭示了掺入的纳米颗粒选择性地位于Janus颗粒的聚(丙烯酸)侧。在亚甲蓝,曙红Y和4-硝基苯酚作为便利基准系统的还原反应上测试了催化剂的效率以及所掺入纳米颗粒的可及性。最终,具有固定化的Ag或Au纳米颗粒的多毛Janus颗粒通过施加极少量的催化剂有效地催化了各自的反应。最后,我们证明了将JP与固定化的金属纳米颗粒一起使用的几个优点,这些优点是:(i)JP使乳液稳定,(ii)乳液可以通过利用JP的响应特性而不稳定,并且(iii)JP可以很容易地反应后恢复,并再次使用。

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