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Improved Catalytic Durability of Pt-Particle/ABS for H2O2 Decomposition in Contact Lens Cleaning

机译:改进的Pt颗粒/ ABS催化隐形眼镜清洗中H2O2分解的催化耐久性

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摘要

In a previous study, Pt nanoparticles were supported on a substrate of acrylonitrile–butadiene–styrene copolymer (ABS) to give the ABS surface catalytic activity for H2O2 decomposition during contact lens cleaning. Although the Pt-particle/ABS catalysts exhibited considerably high specific catalytic activity for H2O2 decomposition, the catalytic activity decreased with increasing numbers of repeated usage, which meant the durability of the catalytic activity was low. Therefore, to improve the catalytic durability in this study, we proposed two types of pretreatments, as well as a combination of these treatments before supporting Pt nanoparticles on the ABS substrate. In the first method, the ABS substrate was etched, and in the second method, the surface charge of the ABS substrate was controlled. A combination of etching and surface charge control was also applied as a third method. The effects of these pretreatments on the surface morphology, surface chemical composition, deposition behavior of Pt particles, and Pt loading weight were investigated by scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), cross-sectional SEM, and inductively coupled plasma atomic emission spectroscopy (ICP-AES), respectively. Both etching and controlling the surface charge effectively improved the catalytic durability for H2O2 decomposition. In addition, the combination treatment was the most effective.
机译:在先前的研究中,Pt纳米颗粒被负载在丙烯腈-丁二烯-苯乙烯共聚物(ABS)的基材上,以赋予ABS表面接触活性,以清洁隐形眼镜时H2O2的分解。尽管Pt-颗粒/ ABS催化剂对H2O2的分解显示出相当高的比催化活性,但随着重复使用次数的增加,催化活性降低,这意味着催化活性的耐久性很低。因此,在本研究中,为了提高催化耐久性,我们提出了两种预处理方法,以及在将Pt纳米颗粒负载到ABS基材上之前将这些处理方法组合使用。在第一方法中,蚀刻ABS衬底,并且在第二方法中,控制ABS衬底的表面电荷。蚀刻和表面电荷控制的组合也被用作第三种方法。通过扫描电子显微镜(SEM),X射线光电子能谱(XPS),横截面SEM和感应法研究了这些预处理对Pt颗粒的表面形态,表面化学组成,沉积行为和Pt载重量的影响。耦合等离子体原子发射光谱法(ICP-AES)。蚀刻和控制表面电荷均有效地提高了H2O2分解的催化耐久性。另外,联合治疗是最有效的。

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