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具有开放金属位点和胺基的水稳定氟代金属有机框架用于高效尿素电催化氧化

Water-Stable Fluorous Metal-Organic Frameworks with Open Metal Sites and Amine Groups for Efficient Urea Electrocatalytic Oxidation.

作者信息

Wang Jinhu, Abazari Reza, Sanati Soheila, Ejsmont Aleksander, Goscianska Joanna, Zhou Yingtang, Dubal Deepak P

机构信息

Zhejiang Key Laboratory of Petrochemical Environmental Pollution Control, National Engineering Research Center for Marine Aquaculture, Marine Science and Technology College, Zhejiang Ocean University, Zhoushan, Zhejiang, 316004, China.

Department of Chemistry, Faculty of Science, University of Maragheh, Maragheh, 55181-83111, Iran.

出版信息

Small. 2023 Oct;19(43):e2300673. doi: 10.1002/smll.202300673. Epub 2023 Jun 27.

Abstract

Urea oxidation reaction (UOR) is one of the promising alternative anodic reactions to water oxidation that has attracted extensive attention in green hydrogen production. The application of specifically designed electrocatalysts capable of declining energy consumption and environmental consequences is one of the major challenges in this field. Therefore, the goal is to achieve a resistant, low-cost, and environmentally friendly electrocatalyst. Herein, a water-stable fluorinated Cu(II) metalorganic framework (MOF) {[Cu (L)(H O) ]·(5DMF)(4H O)} (Cu-FMOF-NH ; H L = 3,5-bis(2,4-dicarboxylic acid)-4-(trifluoromethyl)aniline) is developed utilizing an angular tetracarboxylic acid ligand that incorporates both trifluoromethyl (-CF ) and amine (-NH ) groups. The tailored structure of Cu-FMOF-NH where linkers are connected by fluoride bridges and surrounded by dicopper nodes reveals a 4,24T1 topology. When employed as electrocatalyst, Cu-FMOF-NH requires only 1.31 V versus reversible hydrogen electrode (RHE) to deliver 10 mA cm current density in 1.0 m KOH with 0.33 m urea electrolyte and delivered an even higher current density (50 mA cm ) at 1.47 V versus RHE. This performance is superior to several reported catalysts including commercial RuO catalyst with overpotential of 1.52 V versus RHE. This investigation opens new opportunities to develop and utilize pristine MOFs as a potential electrocatalyst for various catalytic reactions.

摘要

尿素氧化反应(UOR)是水氧化的一种有前景的替代阳极反应,在绿色制氢领域引起了广泛关注。应用能够降低能耗和环境影响的特殊设计的电催化剂是该领域的主要挑战之一。因此,目标是获得一种耐用、低成本且环保的电催化剂。在此,利用一种同时含有三氟甲基(-CF₃)和胺基(-NH₂)的角形四羧酸配体,开发了一种水稳定的氟化铜(II)金属有机框架(MOF){[Cu(L)(H₂O)]·(5DMF)(4H₂O)}(Cu-FMOF-NH₂;H₂L = 3,5-双(2,4-二羧酸)-4-(三氟甲基)苯胺)。Cu-FMOF-NH₂的定制结构中,连接体通过氟桥连接并被二铜节点包围,呈现出4,24T₁拓扑结构。当用作电催化剂时,在1.0 m KOH和0.33 m尿素电解质中,Cu-FMOF-NH₂相对于可逆氢电极(RHE)仅需1.31 V即可提供10 mA cm⁻²的电流密度,在相对于RHE为1.47 V时甚至可提供更高的电流密度(50 mA cm⁻²)。该性能优于几种已报道的催化剂,包括相对于RHE过电位为1.52 V的商业RuO₂催化剂。这项研究为开发和利用原始MOF作为各种催化反应的潜在电催化剂开辟了新机会。

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