Solvent-Mediated Synthesis of Hierarchical MOFs and Derived Urchin-Like Pd@SC/HfO2 with High Catalytic Activity and Stability

材料科学 催化作用 加氢脱氧 化学工程 纳米材料 热液循环 纳米颗粒 溶剂 水溶液 纳米技术 选择性 有机化学 化学 工程类
作者
Ruidong Li,Wu Lu,Ganggang Chang,Shan‐Chao Ke,Yilong Wang,Yao Yao,Yuexing Zhang,Junsheng Li,Xiaoyu Yang,Banglin Chen
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:14 (4): 5887-5896 被引量:19
标识
DOI:10.1021/acsami.1c22986
摘要

Carbon materials with hierarchical morphologies, pores, and compositions have attracted extraordinary attention due to their unique structural advantages and widespread applications. However, their controllable synthesis remains a grand challenge. Herein, a solvent-mediated strategy was demonstrated for the preparation of an urchin-like superstructure via modulating the hydrothermal condition (acetic acid/water ratio) of metal-organic frameworks (MOFs). The direct pyrolysis of a hierarchical NUS-6 precursor produced a well-defined carbon-based composite consisting of sulfur-doped carbon (SC) and HfO2 with an urchin-like morphology and micro-/mesoporosity, while the doped S sites and oxygen vacancies of HfO2 can help to anchor and activate Pd nanoparticles (NPs) through the strong host-guest interaction, which was further confirmed by the calculated results of the binding energy and differential charge density through density functional theory (DFT). The synthesized Pd@SC/HfO2 composite exhibited extremely high catalytic activity and stability toward the water-phase hydrodeoxygenation of vanillin (conversion >99%, selectivity >99%), as well as good universality for the hydrogenation of a series of unsaturated hydrocarbons in an aqueous system. Remarkably, the catalytic activity and structural stability of Pd@SC/HfO2 were largely maintained even after successive 10 cycles.
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