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Two-dimensional layered MoS2: rational design, properties and electrochemical applications

机译:二维分层MoS2:合理的设计,性能和电化学应用

摘要

The layered molybdenum chalcogenide MoS2 has attracted wide attention due to its potential electrochemical applications. Based on its unique physical and chemical properties, numerous advances have shown that nanostructured MoS2, with the advantages of low cost and outstanding properties, is a promising candidate for environmentally benign energy conversion and storage (ECS) devices. Nowadays, in order to lessen the reliance on fossil fuels, the production of hydrogen from water splitting has become an important issue. Hence, developing catalysts composed of earth-abundant elements that possess activities comparable to those of noble metals is of great urgency. According to DFT calculations in terms of HER free-energy diagrams, MoS2 could be used as an effective substitute for noble metals. Meanwhile, MoS2 with various structures has also been applied in the field of energy storage, including batteries and supercapacitors. Additionally, due to their layer-dependent electrical properties, MoS2-based electrochemical devices have been applied as sensors for a variety of chemicals. In this review, we summarize recent advances in the development of MoS2 with high-performance in various electrochemical domains, and recent progress in discovering the mechanisms underlying the enhanced activity. Moreover, we summarize the critical obstacles facing MoS2, and discuss strategies for further improving its activity. Lastly, we offer some suggestions on the pathways toward achieving high performance competitive with noble metal counterparts, and perspectives on practical applications of MoS2 in the future.
机译:层状硫属硫化钼MoS2由于其潜在的电化学应用而备受关注。基于其独特的物理和化学特性,许多进展表明,纳米结构化的MoS2具有低成本和出色的性能,是一种对环境无害的能量转换和存储(ECS)设备的有希望的候选者。如今,为了减少对化石燃料的依赖,从水分解中产生氢已成为重要的问题。因此,迫切需要开发由具有与贵金属相当的活性的富含地球的元素组成的催化剂。根据DFT根据HER自由能图进行的计算,MoS2可以用作贵金属的有效替代物。同时,具有各种结构的MoS 2也已经应用于包括电池和超级电容器的能量存储领域。另外,由于其与层有关的电性能,基于MoS2的电化学装置已被用作各种化学物质的传感器。在这篇综述中,我们总结了在各种电化学领域中具有高性能的MoS2开发的最新进展,以及在发现增强活性基础的机理方面的最新进展。此外,我们总结了MoS2面临的主要障碍,并讨论了进一步改善其活动的策略。最后,我们就与贵金属同行实现高性能竞争的途径提出了一些建议,并就未来MoS2的实际应用提出了一些建议。

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