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A Cascade-Reaction Nanoreactor Composed of a Bifunctional Molecularly Imprinted Polymer that Contains Pt Nanoparticles

机译:级联反应纳米反应器,由含Pt纳米粒子的双功能分子印迹聚合物组成

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摘要

This study was aimed at addressing the present challenge of cascade reactions, namely, how to furnish the catalysts with desired and hierarchical catalytic ability. This issue was addressed by constructing a cascade-reaction nanoreactor made of a bifunctional molecularly imprinted polymer containing acidic catalytic sites and Pt nanoparticles. The acidic catalytic sites within the imprinted polymer allowed one specified reaction, whereas the encapsulated Pt nanoparticles were responsible for another coupled reaction. To that end, the unique imprinted polymer was fabricated by using two well-coupled templates, that is, 4-nitrophenyl acetate and 4-nitrophenol. The catalytic hydrolysis of the former compound at the acidic catalytic sites led to the formation of the latter compound, which was further reduced by the encapsulated Pt nanoparticles to 4-aminophenol. Therefore, this nanoreactor demonstrated a catalytic-cascade ability. This protocol opens up the opportunity to develop functional catalysts for complicated chemical processes.
机译:这项研究旨在解决当前级联反应的挑战,即如何为催化剂提供所需的和分级的催化能力。通过构建由含酸性催化位点和Pt纳米颗粒的双功能分子印迹聚合物制成的级联反应纳米反应器,可以解决此问题。印迹聚合物中的酸性催化位点允许一个特定的反应,而封装的Pt纳米颗粒则负责另一个偶联反应。为此,通过使用两个偶联良好的模板即乙酸4-硝基苯酯和4-硝基苯酚来制造独特的印迹聚合物。前者化合物在酸性催化位点处的催化水解导致后者化合物的形成,其通过封装的Pt纳米颗粒进一步还原为4-氨基苯酚。因此,该纳米反应器表现出催化级联能力。该协议为开发用于复杂化学过程的功能催化剂提供了机会。

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