Enhanced hydrogen generation through electrodeposited non-precious metal Zn/Cu-BTC metal-organic frameworks on indium tin oxide

被引:0
作者
Castro-Castillo, Carmen [1 ]
Espinoza-Gonzalez, Rodrigo [1 ]
Jofre-Ulloa, Pedro P. [2 ,3 ]
Luis-Sunga, Maximina [4 ]
Silva, Nataly [5 ]
Suazo-Hernandez, Jonathan [6 ,7 ]
Soler, Monica [1 ]
Isaacs, Mauricio [2 ,3 ]
Garcia, Gonzalo [4 ]
机构
[1] Univ Chile, Dept Chem Engn Biotechnol & Mat, FCFM, Ave Beauchef 850, Santiago, Chile
[2] Pontificia Univ Catolica Chile, Fac Quim, Vicuna Mackenna 4860, Santiago 7820436, Chile
[3] Pontificia Univ Catolica Chile, Millennium Inst Green Ammonia Energy Vector MIGA, Santiago 7820436, Chile
[4] Univ La Laguna, Inst Univ Mat & Nanotecnol, Dept Quim, POB 456, Santa Cruz De Tenerife, Spain
[5] Univ Desarrollo, Fac Diseno, Ave Plaza 680, Santiago 7610658, Chile
[6] Univ La Frontera, Ctr Plant Soil Interact & Nat Resources Biotechnol, Sci & Biotechnol Bioresource Nucleus BIOREN UFRO, Ave Francisco Salazar 01145, Temuco, Chile
[7] Univ Las Amer, Fac Med Vet & Agron, Sede Concepcion, Concepcion, Chile
关键词
ITO; MOF; Electrocatalysts; Electrocatalysis; Electrodeposition; HER; Electrolyzer; CATALYTIC PERFORMANCE; ELECTROCATALYSTS; DERIVATIVES; REDUCTION; MOF;
D O I
10.1016/j.jpowsour.2025.237480
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The production of high-purity hydrogen for primary energy generation is a key goal in the renewable energy consumption model. Currently, hydrogen production through electrolysis remains quite expensive, making the development of new non-noble metal catalysts for the cathodes of acidic electrolyzers a promising strategy to lower the costs associated with this technology. In this work, Cu, Zn and Zn/Cu particles in the absence and the presence of 1,3,5-benzenetricarboxylic acid (BTC) have been synthesized via binder-free electrodeposition onto an indium tin oxide (ITO) surface as electrocatalysts to improve the hydrogen evolution reaction (HER) in acidic media. Main results highlight the fundamental role of the metal-organic framework (i.e., BTC), combined with the synergistic effect of both metal elements (i.e., Zn and Cu), in creating a uniform deposition of small crystalline particles on the ITO surface. Consequently, a low-cost and robust electrocatalyst (Zn/Cu-BTC/ITO) with enhanced catalytic performance toward the HER was synthesized. Finally, this work emphasizes how electrochemically modified surfaces, created using low-cost metals and straightforward sustainable synthesis methods, can generate atomically dispersed active sites that enhance both electrocatalytic activity and stability. This approach could contribute to the development of innovative electrodes, improving performance while reducing the cost of electrolyzers.
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页数:12
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