Modification and Reduced Graphene Oxide (rGO) Composites Based on MoS2: Improvement of Electrocatalytic Hydrogen Evolution Performance

Download PDF
Abstract: Modification and Reduced Graphene Oxide (rGO) Composites Based on MoS2: Improvement of Electrocatalytic Hydrogen Evolution Performance
Keywords: Molybdenum disulfide; Reduced graphene oxide; Hydrogen evolution reaction; Electrocatalysis; Modifying.
APA Citation: Xiaoyu Wu, Linhao Feng (2024). Modification and Reduced Graphene Oxide (rGO) Composites Based on MoS2: Improvement of Electrocatalytic Hydrogen Evolution Performance. Transactions on Engineering and Technology Research, 2(1), 208-214. https://doi.org/10.62051/f1z0am48

References

  1. Ge J, Hu J, Zhu Y, et al. Recent Advances in Polyoxometalates for Applications in Electrocatalytic Hydrogen Evolution Reaction. Acta Phys.-Chim. Sin. 2020, 36 (1), 1906063.
  2. Ali O.M. Maka, M. Mehmood. Green hydrogen energy production: current status and potential. Clean Energy.2024, 8 (2), 1-7.
  3. Yang Y, Chen Y, Yang J, et al. Preparation of Co/V bimetallic phosphide derived from MOFs and its application in electrocatalytic water decomposition. International Journal of Hydrogen Energy.51 (2024), 145-155.
  4. Liu C, Qiu Y, Xia Y, et al. Noble-metal-free tungsten oxide/carbon (WOx/C) hybrid nanowires for highly efficient hydrogen evolution. Nanotechnology.28 (2017), 445403.
  5. Jian Yiing Loh, Feng Ming Yap, Wee-Jun Ong.2D/2D heterojunction interface: Engineering of 1T/2H MoS2 coupled with Ti3C2Tx heterostructured electrocatalysts for pH-universal hydrogen evolution. Journal of Materials Science & Technology.179 (2024), 86-97.
  6. Guo B, Yu K, Li H, et al. Coral-Shaped MoS2 Decorated with Graphene Quantum Dots Performing as a Highly Active Electrocatalyst for Hydrogen Evolution Reaction. ACS Appl. Mater. Interfaces.2017, 9, 3653-3660.
  7. F. Guzmán-Olivos, L. P. Hernández-Saravia, R. Nelson, et al. Nanocatalysis MoS2/rGO: An Efficient Electrocatalyst for the Hydrogen Evolution Reaction. Molecules.2024, 29, 523.
  8. Wang Z, Song L, Tao H, et al. Fabrication of micro/nano wettability MoS2 hydrogen evolution electrocatalyst based on femtosecond laser. International Journal of Hydrogen Energy. 51 (2024), 327-335.
  9. Li Y, Tang J, Chu Y, et al. Preparation of MoS2 electrocatalyst with different morphologies and catalytic performance of hydrogen evolution reaction. Journal of Tiangong University. 2021, 40 (1), 31-35.
  10. Chen Y, Yao J, Ge J, et al. Research Progress on Enhanced Electrochemical Hydrogen Evolution Performance of Molybdenum Disulfide Nanomaterials. China Molybdenum Industry. 2023, 47 (6), 1-9.
  11. Ren X, Pang L, Zhang Y, et al. One-step hydrothermal synthesis of monolayer MoS2 quantum dots for highly efficient electrocatalytic hydrogen evolution. J. Mater. Chem. A. 2015, 3: 10693-10697.
  12. Ding J, Zhou Y, Li G, et al. MoS2 Nanosheet Assembly Superstructure with a Three-Dimensional Ion Accessible Site: A New Class of Bifunctional Materials for Batteries and Electrocatalysis.Chem. Mater. 2016, 28, 7, 2074-2080.
  13. Li Z, Dai X, Du K, et al. Reduced Graphene Oxide/O-MWCNT Hybrids Functionalized with p ‑ Phenylenediamine as High-Performance MoS2 Electrocatalyst Support for Hydrogen Evolution Reaction. J. Phys. Chem. C. 2016, 120, 1478-1487.
  14. Yang Z, He R, Wu H, et al. Needle-like CoP/rGO growth on nickel foam as an efficient electrocatalyst for hydrogen evolution reaction. International Journal of Hydrogen Energy. 46 (2021), 9690-9698.
  15. Wang M, Tang W, Liu S, et al. Design of earth-abundant ternary Fe 1 − xCoxS2 on RGO as efficient electrocatalysts for hydrogen evolution reaction. Journal of Alloys and Compounds. 862 (2021), 158610.
  16. Xu P, Zhang J, Ye Z, et al. Co doped Ni0.85Se nanoparticles on RGO as efficient electrocatalysts for hydrogen evolution reaction. Applied Surface Science. 494 (2019), 749-755.
  17. Yan Y, Ge X, Liu Z, et al. Facile synthesis of low crystal MoS2 nanosheet-coated CNTs for enhanced hydrogen evolution reaction. Nanoscale. 2013, 5, 7768.
  18. M. L. Báez, A. García, I. Martínez, et al. Electrochemical detection of 17 β-estradiol and bisphenol A using graphene oxide and reduced graphene oxide modified electrodes: A review. International Journal of Electrochemical Science. 19 (2024), 100538.
  19. A. Teran-Dagnino, C. G. Alvarado-Beltran, A. Gaxiola, et al. Influence of the modification of chlorophyll-rich extracts on the hydrogen evolution reaction of rGO-based electrocatalysts. Diamond & Related Materials.145 (2024), 111147.
  20. Zhang X, Wei Q, Ren X. Research progress of graphene oxide preparation methods, structure, properties and applications. Applied Chemical Industry.2022, 51 (7), 2106-2112.
  21. Zhang K, Xu F, Tian W. Semiconductor-mediated Photocatalytic Degradation of Dye Wastewater by MoS2/T-CoP Composite Heterojunction. Guangdong Chemical Industry.2024, 51 (7), 106-109.
  22. Zhang A, Yang C, et al. Highly active MoS2/reduced graph oxide catalyst for anthracene hydrogenation. Chemical Industry and Engineering Progress. 2022, 41 (1), 244-252.
  23. Zhang K: Study on Construction of Transition Metal Electrocatalysts Modified by Graphene Oxide for Overall Water Splitting (PhD, Jiangsu University, China, 2023).
  24. He R, Fang M, Zhou J, et al. Preparation and thermal conductivity of RGO/MOF-based composite phase change materials by reduction of GO with two methods.New Chemical Materials.2023, 51 (3), 121-126.
  25. Liang T, Li Z, Song Y, et al. Co3O4 composite imine-type COFs derived nitrogen-doped carbon materials used as efficient hydrogen prevention electrocatalysts. Journal of Composite Materials.2025, 42.
  26. Nabanita Sen, Arnab Das, Supratim Maity, et al. Tailoring the Sb2Se3/rGO Heterointerfaces for Modulation of Electrocatalytic Hydrogen Evolution Performances in Acidic Media. ACS Appl. Energy Mater. 2023, 6, 1, 58-67.
  27. A. Medda, R. Biswas, S. G. Dastider, et al. Heterostructures of 2D Core/Shell Nanoplatelets with 2D MoS2 as an Efficient Electrocatalyst for Hydrogen Evolution Reaction. ACS Appl. Energy Mater. 2023, 6: 11745 − 11753.
  28. Yang L, Yuan X, Liang W, et al. One Dimensional MoS2/MoP Heterostructures for Efficient Electrocatalytic Hydrogen Evolution Reaction. Catalysis Letter, 2024. https://doi.org/10. 1007/s10562-024-04634-w