通过蚀刻沉积工艺在 Co(OH)2 纳米线阵列上简便地装饰超细钯纳米颗粒,实现 2,4-二氯苯酚的高效电催化加氢脱氯反应

IF 2.3 4区 化学 Q3 CHEMISTRY, PHYSICAL
Qing Gao, Yingxue Yu, Chengyun Wang, Rui Xiang, Hao Lu
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引用次数: 0

摘要

设计一种具有高原子利用效率的高效钯基催化剂是当务之急,这对电催化加氢脱氯(EHDC)的实际应用提出了重大挑战,而EHDC是一种降解有害氯苯酚(CPs)的可行方法。本文采用一种新开发的蚀刻沉积方法,制备了一种用于 2,4- 二氯苯酚(2,4-DCP)脱氯的 Pd/Co(OH)2/NF 混合电极。物理特性表明,与 Pd2+ 氢氧化物伴生的超细 Pd 纳米颗粒(1.57 ± 0.29 nm)均匀沉积在 Co(OH)2 纳米线阵列表面。对 Pd/Co(OH)2/NF 进行的 EHDC 测试表明,其催化性能令人印象深刻,2 小时内的去除率达 94.5%,反应动力学快速(0.024 分钟- 1),电流效率显著(55.4%),与文献报道相比具有很强的竞争力。机理研究表明,钯纳米颗粒的均匀分布和 Pd2+ 位点的共存促进了活性 H* 的产生和 C-Cl 的活化,从而提高了活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Facile Decoration of Ultra-fine Pd Nanoparticles on Co(OH)2 Nanowire Arrays via an Etching-deposition Process for Highly Efficient Electrocatalytic Hydrodechlorination of 2,4-dichlorophenol

Designing an efficient Pd-based catalyst with high atom utilization efficiency is a pressing priority, presenting a significant challenge for the practical deployment of electrocatalytic hydrodechlorination (EHDC), a promising method for degrading hazardous chlorophenols (CPs). Herein, a hybrid Pd/Co(OH)2/NF electrode for the dechlorination of 2,4- dichlorophenol (2,4-DCP) is fabricated by a newly developed etching-deposition approach. Physical characterizations demonstrate that ultra-fine Pd nanoparticles (1.57 ± 0.29 nm) accompany with Pd2+ hydroxides are uniformly deposited on the surface of Co(OH)2 nanowire arrays. EHDC tests on Pd/Co(OH)2/NF show an impressive catalytic performance with a 94.5% removal efficiency within 2 h, fast reaction kinetics (0.024 min− 1) and remarkable current efficiency (55.4%), highly competitive with literature reports. Mechanism investigations indicate that the even distribution of Pd nanoparticles and coexistence of Pd2+ sites facilitate the production of active H* and activation of C-Cl, contributing to the improvement of activity.

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来源期刊
Catalysis Letters
Catalysis Letters 化学-物理化学
CiteScore
5.70
自引率
3.60%
发文量
327
审稿时长
1 months
期刊介绍: Catalysis Letters aim is the rapid publication of outstanding and high-impact original research articles in catalysis. The scope of the journal covers a broad range of topics in all fields of both applied and theoretical catalysis, including heterogeneous, homogeneous and biocatalysis. The high-quality original research articles published in Catalysis Letters are subject to rigorous peer review. Accepted papers are published online first and subsequently in print issues. All contributions must include a graphical abstract. Manuscripts should be written in English and the responsibility lies with the authors to ensure that they are grammatically and linguistically correct. Authors for whom English is not the working language are encouraged to consider using a professional language-editing service before submitting their manuscripts.
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