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Nitrogen-doped anatase nanofibers decorated with noble metal nanoparticles for photocatalytic production of hydrogen

机译:用贵金属纳米粒子修饰的氮掺杂的锐钛矿纳米纤维,用于光催化制氢

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We report the synthesis of N-doped TiO_2 nanofibers and high photocatalytic efficiency in generating hydrogen from ethanol-water mixtures under UV-A and UV-B irradiation. Titanate nanofibers synthesized by hydrothermal method are annealed in air and/or ammonia to achieve N-doped anatase fibers. Depending on the synthesis route, either interstitial N atoms or new N-Ti bonds appear in the lattice, resulting in slight lattice expansion as shown by XPS and HR-TEM analysis, respectively. These nanofibers were then used as support for Pd and Pt nanoparticles deposited with wet impregnation followed by calcination and reduction. In the hydrogen generation tests, the N-doped samples were clearly outperforming their undoped counterparts, showing remarkable efficiency not only under UV-B but also with UV-A illumination. When 100 mg of catalyst (N-doped TiO_2 nanofiber decorated with Pt nanoparticles) was applied to 1 L of water-ethanol mixture, the H_2 evolution rates were as high as 700 μmol/h (UV-A) and 2250 μmol/h (UV-B) corresponding to photo energy conversion percentages of ~3.6 and ~12.3%, respectively.
机译:我们报道了N-掺杂的TiO_2纳米纤维的合成以及在UV-A和UV-B照射下从乙醇-水混合物中产生氢的高光催化效率。将通过水热法合成的钛酸酯纳米纤维在空气和/或氨气中退火,以获得N掺杂的锐钛矿纤维。根据合成路线的不同,晶格中会出现间隙性N原子或新的N-Ti键,分别导致XPS和HR-TEM分析显示出轻微的晶格膨胀。然后将这些纳米纤维用作湿浸渍沉积的Pd和Pt纳米颗粒的载体,然后进行煅烧和还原。在制氢试验中,掺N的样品明显优于未掺杂的样品,不仅在UV-B照射下而且在UV-A照射下显示出显着的效率。将100 mg催化剂(用Pt纳米颗粒修饰的N掺杂TiO_2纳米纤维)应用于1 L的水-乙醇混合物中时,H_2的析出速率分别高达700μmol/ h(UV-A)和2250μmol/ h( UV-B)分别对应〜3.6和〜12.3%的光能转换百分比。

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