Beijing National Laboratory for Molecular Sciences, Laboratory of Molecular Nanostructures and Nanotechnology, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry , Chinese Academy of Sciences , Beijing 100190 , P. R. China.
Institute of Chemical Sciences and Engineering , Ecole Polytechnique Fédérale de Lausanne (EPFL), EPFL-ISIC-Valais , Sion 1950 , Switzerland.
ACS Appl Mater Interfaces. 2018 Jun 13;10(23):19664-19672. doi: 10.1021/acsami.8b03283. Epub 2018 May 30.
The synthesis of porous carbon spheres with hierarchical porous structures coupled with the doping of heteroatoms is particularly important for advanced applications. In this research, a new route for efficient and controllable synthesis of hierarchical porous carbon spheres co-doped with nitrogen, phosphorus, and sulfur (denoted as NPS-HPCs) was reported. This new approach combines in situ polymerization of hexachlorocyclophosphazene and 4,4'-sulfonyldiphenol with the self-assembly of colloidal silica nanoparticles (SiO NPs). After pyrolysis and subsequent removal of the SiO NPs, the resulting NPS-HPCs possess a high surface area (960 m/g) as well as homogeneously distributed N, P, and S heteroatoms. The NPS-HPCs are shown to be an ideal support for anchoring highly dispersed and uniformly sized noble metal NPs for heterogeneous catalysis. As a proof of concept, Pd NPs are loaded onto the NPS-HPCs using only methanol as a reductant at room temperature. The prepared Pd/NPS-HPCs are shown to exhibit high activity, excellent stability, and recyclability for hydrogenation of nitroarenes.
具有分级多孔结构的多孔碳球的合成与杂原子的掺杂对于先进应用尤为重要。在这项研究中,报道了一种高效可控地合成氮、磷、硫共掺杂的分级多孔碳球(记为 NPS-HPCs)的新方法。该新方法结合了六氯环三磷腈和 4,4'-磺酰基二苯酚的原位聚合与胶体二氧化硅纳米粒子(SiO NPs)的自组装。经过热解和随后去除 SiO NPs,得到的 NPS-HPCs 具有高表面积(960 m²/g)和均匀分布的 N、P 和 S 杂原子。NPS-HPCs 被证明是一种理想的载体,可用于固定高度分散且尺寸均匀的贵金属 NPs 以用于多相催化。作为概念验证,仅使用甲醇作为还原剂,在室温下将 Pd NPs 负载到 NPS-HPCs 上。所制备的 Pd/NPS-HPCs 对硝基芳烃的加氢反应表现出高活性、优异的稳定性和可循环性。