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首页> 外文期刊>ACS applied materials & interfaces >A Single-Atomic Noble Metal Enclosed Defective MOF via Cryogenic UV Photoreduction for CO Oxidation with Ultrahigh Efficiency and Stability
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A Single-Atomic Noble Metal Enclosed Defective MOF via Cryogenic UV Photoreduction for CO Oxidation with Ultrahigh Efficiency and Stability

机译:通过低压效率和稳定性,通过低温UV光电封闭单型贵金属封闭缺陷的MOF,用于使用超高效率和稳定性

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摘要

Noble metal single-atom catalysts (SACs) can provide maximized interaction with the reactants and tunable electronic structure dictated by the coordinated support, thus enabling unprecedented high activity at a reduced noble metal cost. However, the practical utilization of SACs that enabled heterogeneous catalysis has the bottlenecks in high manufacturing cost, low catalytic efficiency, and low atomic utilization of metals due to poor porosity of supporting structures, low affinity between SACs and supports, and high-temperature synthesis involved. A scalable and low-energy consumption synthesis of SACs strongly coordinated with an atomically designed 3D nanostructure is needed to realize higher catalytic efficiency and atomic utilization efficiency. Here, a facile synthesis strategy is developed by applying low-cost cerous MOF (Ce-MOF) with tailored defects across the porous and crystalline structure. SACs (Pt) synthesized by cryogenic photoreduction can be enclosed at the defects in Ce-MOF. Due to the uniform dispersion and the unique electronic hybridization with Ce-MOF, the conjugated catalyst with a low weight content of 0.12 wt % exhibited 100% conversion of CO at a low temperature of 150 degrees C, consuming only 10% of Pt required by state-of-the-art catalysts operating under the same conditions, standing as the most effective catalyst reported to date.
机译:贵金属单原子催化剂(SACS)可以通过协调载体的反应物和可调谐电子结构提供最大化的相互作用,从而以降低的贵金属成本实现前所未有的高活性。然而,由于支撑结构的孔隙率差,囊和载体之间的低亲和力,具有高制造成本,低催化效率和金属的低原子利用金属的囊状具有高制造成本,低催化效率和低原子利用的囊的实际利用。 。需要用原子设计的3D纳米结构强烈协调的囊的可扩展和低能量消耗合成,以实现更高的催化效率和原子利用效率。这里,通过将低成本的含有MOF(CE-MOF)施加横跨多孔和晶体结构的定制缺陷来开发了容易合成策略。通过低温光电合成的囊(PT)可以封闭在CE-MOF中的缺陷处。由于具有均匀的分散和与CE-MOF的独特的电子杂交,具有0.12wt%的低重量含量的共轭催化剂在150℃的低温下表现出100%的CO转化,仅消耗10%的PT在相同条件下运行的最先进的催化剂,常常作为迄今为止报告的最有效的催化剂。

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