A Two-Dimensional Cu-Based Nanosheet Producing Formic Acid Via Glycerol Electro-Oxidation in Alkaline Water

被引:1
作者
Das, Srewashi [1 ]
Jain, Siddarth [1 ]
Banerjee, Anwesha [1 ]
Dutta, Arnab [1 ,2 ,3 ]
机构
[1] Indian Inst Technol, Chem Dept, Powai 400076, Maharashtra, India
[2] Indian Inst Technol, Natl Ctr Excellence Capture & Utilizat NCoE CCU CO, Powai 400076, Maharashtra, India
[3] Indian Inst Technol, Interdisciplinary Program Climate Studies, Powai 400076, Maharashtra, India
关键词
Glycerol oxidation; Electrocatalytic oxidation; Cu-based nanosheet; Formate production; Green hydrogen electrolyzer; SELECTIVE ELECTROOXIDATION; OXIDATION; REDUCTION; ELECTROCATALYSTS; NANOPARTICLES; GRAPHENE; CATALYST; HYDROGEN; COPPER;
D O I
10.1002/cplu.202400317
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The sluggishness of the complementary oxygen evolution reaction (OER) is reckoned as one of the major drawbacks in developing an energy-efficient green hydrogen-producing electrolyzer. An array of organic molecule oxidation reactions, operational at a relatively low potential, have been explored as a substitute for the OER. Glycerol oxidation reaction (GOR) has emerged as a leading alternative in this context because glycerol, a waste of biodiesel manufacturing, has become ubiquitous and accessible due to the significant growth in the biodiesel sector in recent decades. Additionally, the GOR generates several value-added organic compounds following oxidation that enhance the cost viability of the overall electrolysis reaction. In this study, a low-cost, room temperature operable, and energy-efficient synthetic methodology has been developed to generate unique two-dimensional CuO nanosheets (CuO NS). This CuO NS material was embedded on a carbon paper electrode, which showcased excellent glycerol electro-oxidation performance operational at a moderately low applied potential. Formic acid is the major product of this CuO NS-driven GOR (Faradaic efficiency similar to 80 %), as it is formed primarily via the glyceraldehyde oxidation pathway. This CuO NS material was also active for oxidizing other abundant alcohols like ethylene glycol and diethylene glycol, albeit at a relatively poor efficiency. Therefore, this robust CuO NS material has displayed the potential to be used in large-scale electrolyzers functioning with HER/GOR reactions.
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页数:8
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共 54 条
[1]   Green synthesis of copper oxide nanoparticles for biomedical application and environmental remediation [J].
Akintelu, Sunday Adewale ;
Folorunso, Aderonke Similoluwa ;
Folorunso, Femi Adekunle ;
Oyebamiji, Abel Kolawole .
HELIYON, 2020, 6 (07)
[2]   A room-temperature NO2 gas sensor based on CuO nanoflakes modified with rGO nanosheets [J].
Bai, Haineng ;
Guo, Hui ;
Wang, Jin ;
Dong, Yan ;
Liu, Bin ;
Xie, Zili ;
Guo, Fuqiang ;
Chen, Dunjun ;
Zhang, Rong ;
Zheng, Youdou .
SENSORS AND ACTUATORS B-CHEMICAL, 2021, 337
[3]   Glycerol oxidation assisted electrocatalytic nitrogen reduction: ammonia and glyceraldehyde co-production on bimetallic RhCu ultrathin nanoflake nanoaggregates [J].
Bai, Juan ;
Huang, Hao ;
Li, Fu-Min ;
Zhao, Yue ;
Chen, Pei ;
Jin, Pu-Jun ;
Li, Shu-Ni ;
Yao, Hong-Chang ;
Zeng, Jing-Hui ;
Chen, Yu .
JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (37) :21149-21156
[4]   Critical Role of Interface Design in Acceleration of Overall Water Splitting and Hybrid Electrolysis Process: State of the Art and Perspectives [J].
Behera, Snehanjali ;
Ganguly, Souradip ;
Loha, Chanchal ;
Mondal, Biswajit ;
Ghosh, Sirshendu .
ENERGY & FUELS, 2023, 37 (11) :7603-7633
[5]   CuO nanostructures: facile synthesis and applications for enhanced photodegradation of organic compounds and reduction of p-nitrophenol from aqueous phase [J].
Bhattacharjee, Archita ;
Ahmaruzzaman, M. .
RSC ADVANCES, 2016, 6 (47) :41348-41363
[6]   Electrocatalytic Oxidation of Methanol, Ethanol, and Glycerol on Ni(OH)2 Nanoparticles Encapsulated with Poly[Ni(salen)] Film [J].
Bott-Neto, Jose L. ;
Martins, Thiago S. ;
Machado, Sergio A. S. ;
Ticianelli, Edson A. .
ACS APPLIED MATERIALS & INTERFACES, 2019, 11 (34) :30810-30818
[7]   Electrochemical production of lactic acid from glycerol oxidation catalyzed by AuPt nanoparticles [J].
Dai, Chencheng ;
Sun, Libo ;
Liao, Hanbin ;
Khezri, Bahareh ;
Webster, Richard D. ;
Fisher, Adrian C. ;
Xu, Zhichuan J. .
JOURNAL OF CATALYSIS, 2017, 356 :14-21
[8]   SECM Studies on the Electrocatalytic Oxidation of Glycerol at Copper Electrodes in Alkaline Medium [J].
Dantas, L. M. F. ;
De Souza, A. P. R. ;
Castro, P. S. ;
Paixao, T. R. L. C. ;
Bertotti, M. .
ELECTROANALYSIS, 2012, 24 (08) :1778-1782
[9]   Bi-modified Pt Electrodes toward Glycerol Electrooxidation in Alkaline Solution: Effects on Activity and Selectivity [J].
de Souza, Matheus B. C. ;
Vicente, Rafael A. ;
Yukuhiro, Victor Y. ;
Pires, Cleo T. G. V. M. T. ;
Cheuquepan, William ;
Bott-Neto, Jose L. ;
Solla-Gullon, Jose ;
Fernandez, Pablo S. .
ACS CATALYSIS, 2019, 9 (06) :5104-5110
[10]   Recent Advances in Thermo-, Photo-, and Electrocatalytic Glycerol Oxidation [J].
Dodekatos, Georgios ;
Schuenemann, Stefan ;
Tueysuez, Harun .
ACS CATALYSIS, 2018, 8 (07) :6301-6333