Fabrication of centimeter-scale MoTe2 layers with high chemical stability for hydrogen evolution application

被引:1
作者
Chandran, Yadu [1 ]
Arya, Nitika [1 ]
Luhar, Bhumit [2 ]
Balakrishnan, Viswanath [1 ]
机构
[1] Indian Inst Technol Mandi, Sch Mech & Mat Engn, Mandi 175075, Himachal Prades, India
[2] Indian Inst Technol Mandi, Sch Phys Sci, Mandi 175075, Himachal Prades, India
关键词
MoTe; 2; Chemical vapor Deposition growth; Transfer; HER; Flexible electrode; ELECTROCATALYTIC MICRODEVICE; MONOLAYER; FILMS; TRANSITION; STRAIN; GROWTH; 1T';
D O I
10.1016/j.ijhydene.2024.12.477
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
Two-dimensional transition metal dichalcogenides (2D-TMDs) are suitable candidates for the hydrogen evolution reaction (HER) in water splitting. Among the different phases of TMDs, semi-metallic and metallic phases have shown greater efficiency for HER. However, achieving large-scale production of stable, semi-metallic or metallic phases of TMDs is challenging. We report large-scale growth of semi-metallic 1T '-MoTe2 on three different substrates: sapphire, SiO2/Si, and fused quartz with an approach to transfer on flexible substrates with increased stability. Due to rapid oxidation of MoTe2 flakes upon exposure to air, we explored a new transfer strategy using gold deposition to easily transfer flakes from the growth substrate to a flexible substrate. The gold coating ensures protective coverage and acts as a conducting medium after transfer. High activity was observed in MoTe2 flakes transferred from sapphire, with an onset potential of 280 mV and a Tafel slope of 125 mV/dec. Additionally, the effectiveness of the transfer process in protecting the sample was demonstrated by the absence of oxide formations in the gold-coated MoTe2 sample for up to one year. These results indicate that the goldmediated transfer mechanism is suitable for creating flexible HER electrodes based on unstable 2D materials.
引用
收藏
页码:983 / 989
页数:7
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