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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Vapor infiltration of a reducing agent for facile synthesis of mesoporous Pt and Pt-based alloys and its application for the preparation of mesoporous Pt microrods in anodic porous membranes
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Vapor infiltration of a reducing agent for facile synthesis of mesoporous Pt and Pt-based alloys and its application for the preparation of mesoporous Pt microrods in anodic porous membranes

机译:用于介孔Pt和Pt基合金合成的还原剂的蒸气渗透及其在阳极多孔膜中制备介孔Pt微棒的应用

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摘要

Highly ordered mesoporous Pt and Pt-based alloy (Pt-Ru and Pt-Ni) microparticles were deposited from lyotropic liquid crystal (LLC) films containing corresponding metal species via vapor infiltration of a reducing agent of dimethylaminoborane (DMAB). The LLC films with 2D hexagonal symmetry were prepared on flat substrates from diluted surfactant solutions including water, nonionic surfactant, ethanol, and metal species by drop-coating. Low-angle XRD measurements and TEM observations proved that the deposited Pt and Pt-based alloy microparticles have 2D hexagonally ordered mesoporous structures. Moreover, EDS mapping of mesoporous Pt-Ru microparticles indicated that the constituent metals are well-distributed within the mesopore walls. Moreover, we effectively utilized the method to fabricate mesoporous Pt microrods with 100 nm in diameter by using a porous anodic alumina membrane (PAAM) as a hard template. The Pt microrods possess a highly porous nanostructure. Our method utilizing vapor infiltration of a reducing agent, unlike conventional electrochemical and chemical deposition methods, allows the facile preparation of mesoporous. metal microparticles and microrods and should be widely applicable to the deposition of various metals and multicomponent alloys.
机译:通过对二甲基氨基硼烷(DMAB)的还原剂进行蒸汽渗透,从含有相应金属物种的溶致液晶(LLC)膜中沉积了高度有序的Pt和Pt基合金(Pt-Ru和Pt-Ni)微粒。具有二维六角形对称性的LLC膜是通过在平面基板上通过稀释的表面活性剂溶液(包括水,非离子表面活性剂,乙醇和金属物质)通过滴涂制备的。低角度XRD测量和TEM观察证明,沉积的Pt和Pt基合金微粒具有2D六角形有序介孔结构。此外,介孔Pt-Ru微粒的EDS绘图表明,组成金属在介孔壁内分布良好。此外,我们通过使用多孔阳极氧化铝膜(PAAM)作为硬模板,有效地利用了该方法来制造直径为100 nm的中孔Pt微棒。铂微棒具有高度多孔的纳米结构。与常规的电化学和化学沉积方法不同,我们利用还原剂的蒸气渗透的方法允许容易地制备中孔。金属微粒和微棒,应广泛应用于各种金属和多组分合金的沉积。

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