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Donut Assembly of Nanoparticles with High Catalytic Efficiency for Hydrogen Gas Generation from Ammonia Borane

机译:纳米颗粒的甜甜圈组件,具有高催化效率的氨硼烷氢气产生

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摘要

Polymer-supported transition metal nano particles usually exhibited low catalytic efficiency due to the long diffusion length for the reactants to reach the catalytic center. Herein, we used cyclic polymers to construct donut-like assembly with two cyclic macromolecules sandwiching a layer of metal NPs. Doping Rh into the nano particles led to extremely active catalysts for ammonia borane decomposition with a high TOF of 780 min(-1). We attributed the high efficiency to the reduced diffusion length in this special assembly. Light-promoted effect was also demonstrated with TOF further elevated to 980 min(-1). The modular nature of this design also permitted subsequent structural modification to achieve high stability with TON reaching over 2x10(6).
机译:聚合物负载的过渡金属纳米颗粒通常由于反应物的长扩散长度而呈现低催化效率,以进入催化中心。 在此,我们使用循环聚合物以构建与夹在一层金属NP层的循环大分子的甜甜圈的组件。 将Rh掺杂到纳米颗粒中导致极其活性的催化剂,用于氨硼烷分解,高于780min(-1)。 我们将高效率归因于该特殊装配中的降低的扩散长度。 还通过进一步升高至980分钟(-1)的TOF来证明光促进效果。 这种设计的模块化性质还允许随后的结构改性,以实现高稳定性,吨达到2×10(6)。

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