Synergistic Catalyst Design for Enhanced Electrochemical Hydrogen Evolution: Fe2O3/MoS2/Ti3C2Tx MXene Ternary Composite

被引:7
作者
Dongre, S. Sumanth [1 ]
Iqbal, Asif [2 ]
Thapa, Ranjit [2 ,3 ]
Pratheeksha, M. [1 ]
Ramu, Shwetharani [1 ]
Balakrishna, R. Geetha [1 ]
机构
[1] Jain Deemed Univ, Ctr Nano & Mat Sci CNMS, Ramanagara 562112, Karnataka, India
[2] SRM Univ AP, Dept Phys, Amaravati 522240, Andhra Prades, India
[3] SRM Univ AP, Ctr Computat & Integrat Sci, Amaravati 522240, Andhra Prades, India
来源
ACS APPLIED ENGINEERING MATERIALS | 2024年 / 2卷 / 04期
关键词
Fe2O3/MoS2; Ti3C2Tx MXene; exfoliation; ternarycomposite; electrocatalytichydrogen evolution; STEP HYDROTHERMAL SYNTHESIS; ELECTROCATALYTIC ACTIVITY; MOS2; NANOSHEETS; NANOPARTICLES; ALPHA-FE2O3; SITES; RGO;
D O I
10.1021/acsaenm.4c00027
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Developing a cost-effective and earth-abundant electrocatalyst to produce green hydrogen is vital toward sustainable energy with a net-zero carbon emission. In this regard, abundantly available nanostructured transition metals with a tunable structure, high surface area, and high conductivity are considered to be suitable cathode materials for water splitting. Herein, we design a 3D/2D Fe2O3/MoS2/Ti3C2Tx MXene ternary composite through hydrothermal synthesis for electrochemical hydrogen evolution. The 3D/2D composite of Fe2O3 nanoparticles with MoS2 nanosheets showed exceptional electrocatalytic activity with an overpotential and a Tafel slope of 194.1 mV and 102 mV/dec, respectively, which outperforms pristine Fe2O3 nanoparticles and MoS2 nanosheets by a great margin of over 50 mV. To further enhance the electrical conductivity, exfoliated Ti3C2Tx MXene is introduced to form a ternary composite, and it is found that this composite electrocatalyst shows an impressive overpotential of 123 mV at a current density of 10 mA/cm(2) in an acidic medium, with high durability over 12 h for hydrogen evolution. The smaller charge-transfer resistance (88.2 Omega) and larger double-layer capacitance (12 mF/cm(2)) values of the ternary composite with a low Tafel slope of 71 mV/dec indicate the role of enhanced interfacial charge transfer and specific surface area inducing enhanced HER activity.
引用
收藏
页码:943 / 954
页数:12
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