Tailoring of Time for Hydrothermal Synthesis of 2D MoSe2 with Enhanced Adsorption and Electro-Catalytic Efficiency for Applications in Self-Cleaning and Hydrogen Energy Generation

IF 6.5 3区 材料科学 Q2 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Rashbihari Layek, Pathik Kumbhakar
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引用次数: 0

Abstract

Molybdenum diselenide (MoSe2), a 2D layered transition metal dichalcogenide, has garnered significant scientific research interest for its catalytic and electrocatalytic activities. Here, a straightforward hydrothermal procedure is used to synthesize MoSe2 nanosheets (NSs) and focus on their adsorption capabilities and hydrogen evolution reaction (HER) activity. The MoSe2 NSs which are synthesized by 12 h of hydrothermal treatment found to exhibit the highest adsorption capacity of 91.67 mg g−1. The kinetics of the adsorption process have been found to follow the pseudo-second-order model, signifying chemisorption and multilayer adsorption as described by the Freundlich isotherm. The thermodynamic analysis further suggests that the adsorption proceeds by endothermic and spontaneous mechanisms. The self-cleaning property of the adsorbent is demonstrated by degrading the dye on the adsorbent-coated cotton fabric. The sample created using a 12 h hydrothermal method has been shown to have a minimal Tafel slope of 58 mV dec−1. It also shows excellent HER activity at low over-potential and possesses long-term durability. The dual functionality of MoSe2 NSs in both adsorption and electrocatalytic activity highlights their potential for application in environmental remediation and renewable energy production.

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来源期刊
Advanced Sustainable Systems
Advanced Sustainable Systems Environmental Science-General Environmental Science
CiteScore
10.80
自引率
4.20%
发文量
186
期刊介绍: Advanced Sustainable Systems, a part of the esteemed Advanced portfolio, serves as an interdisciplinary sustainability science journal. It focuses on impactful research in the advancement of sustainable, efficient, and less wasteful systems and technologies. Aligned with the UN's Sustainable Development Goals, the journal bridges knowledge gaps between fundamental research, implementation, and policy-making. Covering diverse topics such as climate change, food sustainability, environmental science, renewable energy, water, urban development, and socio-economic challenges, it contributes to the understanding and promotion of sustainable systems.
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