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Versatile double hydrophilic block copolymer: dual role as synthetic nanoreactor and ionic and electronic conduction layer for ruthenium oxide nanoparticle supercapacitors

机译:多功能双亲水性嵌段共聚物:兼用作合成纳米反应器和氧化钌纳米粒子超级电容器的离子和电子导电层

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摘要

The facile synthetic approach to ruthenium oxide nanoparticles using double hydrophilic block copolymers (DHBCs) and their application toward the supercapacitor are presented. Nanostructured hydrous ruthenium oxide (RuO2) nanoparticles are synthesized using a double hydrophilic block copolymer of poly(ethylene oxide)-block-poly(acrylic acid) (PEO-b-PAA) as a template, forming a micelle upon addition of the ruthenium precursor, which then transformed into RuO2 nanoparticles of controlled dimension with reducing agents. The synthesized hydrous RuO2 center dot xH(2)O nanoparticles are very stable for several months without any noticeable aggregates. Furthermore, we have demonstrated their utility in application as supercapacitors. Through annealing at 400 degrees C, we found that the crystallinity of RuO2 nanoparticles increases considerably with a simultaneous transformation of the surrounding double hydrophilic block copolymer into ionic and electronic conducting buffer layers atop RuO2 nanoparticles, which contribute to the significant enhancement of the overall specific capacitance from 106 to 962 F g(-1) at 10 mV s(-1). The RuO2 nanoparticles annealed at 400 degrees C also exhibit a superior retention of capacitance over 1000 cycles at very high charge-discharge rates at 20 A g(-1). We envision that the double hydrophilic block copolymer will provide a facile and general tool in creating functional nanostructures with controlled dimensions that are useful for various applications.
机译:提出了使用双亲水嵌段共聚物(DHBC)的氧化钌纳米颗粒的简便合成方法及其在超级电容器中的应用。以聚(环氧乙烷)-嵌段-聚(丙烯酸)(PEO-b-PAA)的双亲水嵌段共聚物为模板,合成纳米结构水合氧化钌(RuO2)纳米颗粒,在加入钌前体后形成胶束,然后用还原剂转化为尺寸可控的RuO2纳米粒子。合成的水合RuO2中心点xH(2)O纳米粒子在没有任何明显聚集的情况下可稳定使用数月。此外,我们已经证明了它们作为超级电容器在应用中的效用。通过在400摄氏度下退火,我们发现RuO2纳米粒子的结晶度随着周围双亲水嵌段共聚物同时转变为RuO2纳米粒子顶部的离子和电子导电缓冲层而显着提高,这有助于显着提高整体比电容10 mV s(-1)时从106到962 F g(-1)在20 A g(-1)下以非常高的充放电速率在400摄氏度下退火的RuO2纳米粒子在1000个循环中也表现出优异的电容保持率。我们设想,该双亲水嵌段共聚物将提供一种容易且通用的工具来产生具有受控尺寸的功能性纳米结构,该结构可用于各种应用。

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