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Natural Dissociation Ratio of Carboxyl Group Controlled Highly Dispersed Silver Nanoparticles on PSA Microspheres and Their Catalytic Performance

机译:羧基控制的高分散银纳米粒子在PSA微球上的自然离解率及其催化性能

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摘要

The highly dispersed silver nanoparticle-loaded poly(styrene-co-acrylic acid) nanocomposites (nAg@PSA) were prepared and characterized by transmission electron microscopy and thermogravimetry. The amount and distribution of colloidal silver per particle were related to the dissociation ratio of carboxyl groups in the PSA sphere. The amount of carboxyl groups was evaluated by a conductivity titration curve. However, the dissociation of carboxyl groups on PSA is difficult to determine accurately via existing methods because the dissociation ratio will increase with increasing impurity ions during titration. We developed a technique to determine the dissociation ratio of PSA without impurity ions. This employs a novel distance-variable parallel electrode system. Thus, the relationship between nano silver distribution and natural dissociation of carboxyl groups on the surface of the PSA spheres was investigated for the first time. Accurately measuring and controlling the dissociation facilitated the production of PSA spheres containing highly dispersed silver nanoparticles. The catalytic performance of as-prepared nAg@PSA catalysts was studied by reduction of 4-nitrophenol. By controlling the amount of natural dissociation ratio of carboxyl group on PSA sphere, dispersion of silver nanoparticles can be designed and attained controllably. They offer easy synthesis, high catalytic performance, and good recyclability.
机译:制备了高度分散的负载银纳米颗粒的聚(苯乙烯-丙烯酸共聚物)纳米复合材料(nAg @ PSA),并通过透射电子显微镜和热重分析对其进行了表征。每个粒子中胶体银的数量和分布与PSA球中羧基的解离率有关。通过电导率滴定曲线评估羧基的量。但是,由于滴定过程中解离率会随着杂质离子的增加而增加,因此难以通过现有方法准确确定PSA上羧基的解离。我们开发了一种确定无杂质离子的PSA的解离率的技术。这采用了新颖的距离可变平行电极系统。因此,首次研究了纳米银分布与PSA球表面上羧基的自然解离之间的关系。准确地测量和控制解离有助于制备包含高度分散的银纳米粒子的PSA球。通过还原4-硝基苯酚研究了制备的nAg @ PSA催化剂的催化性能。通过控制PSA球上羧基的自然解离比例,可以设计并控制银纳米颗粒的分散。它们具有易于合成,高催化性能和良好的可回收性的特点。

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