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具有增强氧活化性能的三维泡沫镍负载Pt/NiFe LDH催化剂用于室温甲醛氧化

Three-dimensional Ni foam supported Pt/NiFe LDH catalyst with enhanced oxygen activation for room-temperature formaldehyde oxidation.

作者信息

Ye Jiawei, Wu Min, Zhu Bicheng, Cheng Bei, Yu Jiaguo

机构信息

Laboratory of Solar Fuel, Faculty of Materials Science and Chemistry, China University of Geosciences, 68 Jincheng Street, Wuhan 430078, PR China.

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, 122 Luoshi Road, Wuhan 430070, PR China.

出版信息

J Hazard Mater. 2024 Aug 5;474:134672. doi: 10.1016/j.jhazmat.2024.134672. Epub 2024 May 26.

Abstract

Room-temperature catalytic oxidation of formaldehyde (HCHO) has been extensively investigated due to its high efficiency, convenience, and environmental friendliness. Herein, nickel-iron layered double hydroxide (NiFe LDH) nanosheets were synthesized in-situ on a nickel foil (NF) using a facile one-step hydrothermal method, followed by the deposition of ultra-low content (0.069 wt%) of Pt nanoparticles through NaBH reduction. The resulting three-dimensional (3D) hierarchical Pt/NiFe-NF catalyst exhibited exceptional activity for the complete decomposition of formaldehyde to carbon dioxide (CO) at room temperature (∼95 % conversion within 1 h), as well as remarkable cycling stability. The 3D porous structure of Pt/NiFe-NF provides fast transport channels for the diffusion of gas molecules, making the active catalyst surfaces more accessible. Moreover, abundant hydroxyl groups in NiFe LDH serve as adsorption centers for HCHO molecules to form dioxymethylene (DOM) and formate intermediates. Furthermore, electronic interactions between NiFe LDH and Pt enhance the adsorption and activation of O on Pt surfaces, leading to the complete decomposition of intermediates into non-toxic products. This work presents new insights into the design and preparation of Pt-based 3D hierarchical catalysts with surface-rich hydroxyl groups for the efficient removal of indoor HCHO.

摘要

由于其高效、便捷和环境友好的特点,室温下甲醛(HCHO)的催化氧化已得到广泛研究。在此,采用简便的一步水热法在镍箔(NF)上原位合成了镍铁层状双氢氧化物(NiFe LDH)纳米片,随后通过硼氢化钠还原沉积超低含量(0.069 wt%)的铂纳米颗粒。所得的三维(3D)分级Pt/NiFe-NF催化剂在室温下对甲醛完全分解为二氧化碳(CO)表现出优异的活性(1小时内转化率约为95%),以及出色的循环稳定性。Pt/NiFe-NF的3D多孔结构为气体分子扩散提供了快速传输通道,使活性催化剂表面更容易接触。此外,NiFe LDH中丰富的羟基作为HCHO分子的吸附中心,形成二氧亚甲基(DOM)和甲酸盐中间体。此外,NiFe LDH与Pt之间的电子相互作用增强了O在Pt表面的吸附和活化,导致中间体完全分解为无毒产物。这项工作为设计和制备具有表面富含羟基的Pt基3D分级催化剂以高效去除室内HCHO提供了新的见解。

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