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Deposition of platinum nanoparticles on organic functionalized carbon nanotubes grown in situ on carbon paper for fuel cells

机译:在用于燃料电池的碳纸上原位生长的有机功能化碳纳米管上沉积铂纳米颗粒

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摘要

Deposition of small Pt nanoparticles of the order of 2-2.5 nm on carbon nanotubes (CNTs) grown directly on carbon paper is demonstrated in this work. Sulfonic acid functionalization of CNTs is used as a means to facilitate the uniform deposition of Pt on the CNT surface. The organic molecules attached covalently to the CNT surface via electrochemical reduction of corresponding diazonium salts are treated with concentrated sulfuric acid and the sulfonic acid sites thus attached are used as molecular sites for Pt ion adsorption, which are subsequently reduced to yield the small Pt nanoparticles. Cyclic voltammograms reveal that, after removal of the organic groups during high temperature reduction, these Pt nanoparticles are in electrical contact with the carbon paper backing. A typical Pt loading of 0.09 mg cm(-2) is achieved, that shows higher specific surface area of Pt than an E-TEK electrode with Pt loading of 0.075 mg cm(-2). A membrane and electrode assembly (MEA) is prepared with a Pt/CNT electrode as cathode and an E-TEK electrode as anode, and it offers better performance than a conventional E-TEK MEA.
机译:在这项工作中证明了直接在复写纸上生长的碳纳米管(CNT)上沉积2-2.5 nm数量级的小Pt纳米颗粒。 CNT的磺酸官能化用作促进Pt在CNT表面上均匀沉积的手段。通过浓硫酸将经由电化学还原相应的重氮盐共价附接至CNT表面的有机分子进行处理,并将由此附接的磺酸位点用作Pt离子吸附的分子位点,随后将其还原以生成小的Pt纳米颗粒。循环伏安图显示,在高温还原过程中除去有机基团后,这些Pt纳米粒子与碳纸背衬电接触。达到了0.09 mg cm(-2)的典型Pt负载量,显示出的Pt比E-TEK电极的Pt负载量为0.075 mg cm(-2)更高。以Pt / CNT电极为阴极,E-TEK电极为阳极的膜电极组件(MEA),其性能优于传统的E-TEK MEA。

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