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首页> 外文期刊>Catalysis science & technology >Controllable coordination of a phosphotungstic acid-modified carbon matrix for anchoring Pt species with different sizes: from single atoms and subnanoclusters to nanoparticles
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Controllable coordination of a phosphotungstic acid-modified carbon matrix for anchoring Pt species with different sizes: from single atoms and subnanoclusters to nanoparticles

机译:磷钨的可控的协调酸改性碳矩阵锚定Pt物种不同大小:从单一的原子和subnanoclusters纳米颗粒

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摘要

Pt species with different sizes uniformly dispersed on a phosphotungstic acid (PTA) modified carbon matrix (PTA-C) were controllably synthesized by manipulating the coordination environment. The results indicate that high-density and well-defined isolated single Pt atoms (Pt SAs) existed in the Pt SAs0.5/PTA-C sample and the Pt SAs carried positive charges due to the coordination of Pt with oxygen atoms of the PTA-C support. Better catalytic activity and selectivity for the hydrogenation of aromatic nitro-compounds are obtained over Pt SAs0.5/PTA-C than its nanocatalyst counterparts and hybrid catalysts. The Pt SAs0.5/PTA-C catalyst shows nearly 100% conversion of nitrobenzene, 99% selectivity to m-bromonitrobenzene and TOF was up to 2062 h−1 with only 0.5 mmol‰ catalyst. The excellent catalytic performance is due to the well-defined and high-density Pt SA sites, which make H2 dissociate with a low barrier and then rapidly spill over to the substrate and the intermediates. Pt SAs0.5/PTA-C retained over 90% conversion over five cycles, exhibiting the outstanding stability of Pt SAs.
机译:Pt物种不同大小均匀分散在磷钨酸(PTA)修改碳矩阵(PTA-C)是可控的合成了操纵的协调环境。高密度和定义良好的孤立单一Pt原子(Pt SAs)存在于Pt SAs0.5 / PTA-C样品和Pt SAs带正电荷由于Pt与氧原子的协调PTA-C的支持。和选择性加氢的芳香硝基化合物在Pt SAs0.5 / PTA-C获得比其nanocatalyst同行和混合催化剂。硝基苯转化近100%,99%选择性m-bromonitrobenzene和TOF了2062 h−1只有0.5更易‰催化剂。优异的催化性能是由于定义和高密度Pt公司网站,然后与低H2分离障碍衬底和迅速蔓延中间体。在5周期转换,表现出杰出的Pt SAs的稳定。

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