首页> 外文会议>Conference on electroactive polymer actuators and devices >The Synthesis of Nano-Scaled Platinum Particles (NSPP)-Their Role in Performance Improvement of Ionic Polymer-Metal Composite (IPMC) Artificial Muscles
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The Synthesis of Nano-Scaled Platinum Particles (NSPP)-Their Role in Performance Improvement of Ionic Polymer-Metal Composite (IPMC) Artificial Muscles

机译:离子聚合物 - 金属复合物(IPMC)人工肌肉性能改善纳米缩铂颗粒(NSPP) - 中粒子作用的合成

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In this work the synthesis of nano-scaled platinum particles by a chemical reducing technique within an ion-exchange membrane has been performed. It is desirable to gain a fundamental knowledge and understanding of the properties of small nano-scaled platinum particles within ion-exchange membranes, which can affect the performance of Ionic Polymer-Metal Composite (IPMC) artificial muscles. In IPMC artificial muscle applications, the finite size of platinum particles is believed to strongly influence their properties. This might be related to a platinum surface effect originating from the electronic surface states of platinum particles that differ from the bulk states. In order to address this issue, we have attempted to synthesize small platinum particles having different size distributions by using protective agents. Further, we have characterized them as well. For IPMC artificial muscles, the presence of such nano-scale platinum particles minimizes the solvent-leakage from the surface electrodes. This in turn improves their performance dramatically. A successfully fabricated IPMC artificial muscle with nano-Platinum particles has shown a significantly improved force density as much as 100% than that of the conventional IPMC.
机译:在这项工作中,已经进行了在离子交换膜内通过化学还原技术合成纳米缩铂颗粒。期望对离子交换膜内的小纳米铂颗粒的性质进行基础知识和理解,这可能影响离子聚合物 - 金属复合物(IPMC)人工肌肉的性能。在IPMC人造肌肉应用中,据信铂颗粒的有限尺寸强烈影响其性质。这可能与源自与散装状态不同的铂颗粒的电子表面状态的铂表面效果有关。为了解决这个问题,我们试图通过使用保护剂合成具有不同尺寸分布的小铂颗粒。此外,我们也表征了它们。对于IPMC人工肌肉,这种纳米级铂颗粒的存在使来自表面电极的溶剂泄漏最小化。这反过来又提高了他们的性能。具有纳米铂颗粒的成功制造的IPMC人造肌显示出明显改善的力密度,其力密度高达常规IPMC的力密度。

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