Kim Kyung Soo, Hong Youngmin, Kim Heon Chul, Choi Sang-Il, Hong Jong Wook
Department of Chemistry, University of Ulsan, Ulsan, 44776, Korea.
Department of Chemistry and Green-Nano Materials Research Center, Kyungpook National University, Daegu, 41566, Korea.
Chemistry. 2019 May 23;25(29):7185-7190. doi: 10.1002/chem.201900238. Epub 2019 May 2.
Controlling the morphology and composition of nanocatalysts constructed from metals and conductive polymers has attracted attention owing to their great potential for the development of high-efficiency catalysts for various catalytic applications. Herein, a facile synthetic approach for ultrathin-polyaniline-coated Pt-Ni nanooctahedra (Pt-Ni@PANI hybrids) with controllable PANI shell thicknesses is presented. Pt-Ni nanooctahedra/C catalysts enclosed by PANI shells with thicknesses from 0.6 to 2.4 nm were obtained by fine control over the amount of aniline. The various Pt-Ni@PANI hybrids exhibited electrocatalytic activity toward the methanol oxidation reaction that is highly dependent on the thickness of the PANI shell. Pt-Ni@PANI hybrids with the thinnest PANI shells (0.6 nm) showed markedly improved electrocatalytic performance for the methanol oxidation reaction compared with Pt-Ni@PANI hybrids with thicker PANI shells, Pt-Ni nanooctahedra/C, and commercial Pt/C due to synergistic benefits of ultrathin PANI shells and Pt-Ni alloy.
控制由金属和导电聚合物构建的纳米催化剂的形态和组成因其在开发用于各种催化应用的高效催化剂方面的巨大潜力而备受关注。在此,我们提出了一种简便的合成方法,用于制备具有可控聚苯胺(PANI)壳厚度的超薄聚苯胺包覆的Pt-Ni纳米八面体(Pt-Ni@PANI杂化物)。通过精确控制苯胺的用量,获得了被厚度为0.6至2.4 nm的PANI壳包围的Pt-Ni纳米八面体/C催化剂。各种Pt-Ni@PANI杂化物对甲醇氧化反应表现出电催化活性,且该活性高度依赖于PANI壳的厚度。与具有较厚PANI壳的Pt-Ni@PANI杂化物、Pt-Ni纳米八面体/C和商业Pt/C相比,具有最薄PANI壳(0.6 nm)的Pt-Ni@PANI杂化物由于超薄PANI壳和Pt-Ni合金的协同作用,对甲醇氧化反应表现出显著改善的电催化性能。