DSI-Mintek Nanotechnology Innovation Centre, Randburg 2125, South Africa.
Department of Chemical Sciences, University of Johannesburg, Doornfontein 2028, South Africa.
Biosensors (Basel). 2022 Jun 2;12(6):386. doi: 10.3390/bios12060386.
Two-dimensional transition metal dichalcogenides (2D TMDs) have gained considerable attention due to their distinctive properties and broad range of possible applications. One of the most widely studied transition metal dichalcogenides is molybdenum disulfide (MoS). The 2D MoS nanosheets have unique and complementary properties to those of graphene, rendering them ideal electrode materials that could potentially lead to significant benefits in many electrochemical applications. These properties include tunable bandgaps, large surface areas, relatively high electron mobilities, and good optical and catalytic characteristics. Although the use of 2D MoS nanosheets offers several advantages and excellent properties, surface functionalization of 2D MoS is a potential route for further enhancing their properties and adding extra functionalities to the surface of the fabricated sensor. The functionalization of the material with various metal and metal oxide nanostructures has a significant impact on its overall electrochemical performance, improving various sensing parameters, such as selectivity, sensitivity, and stability. In this review, different methods of preparing 2D-layered MoS nanomaterials, followed by different surface functionalization methods of these nanomaterials, are explored and discussed. Finally, the structure-properties relationship and electrochemical sensor applications over the last ten years are discussed. Emphasis is placed on the performance of 2D MoS with respect to the performance of electrochemical sensors, thereby giving new insights into this unique material and providing a foundation for researchers of different disciplines who are interested in advancing the development of MoS-based sensors.
二维过渡金属二硫属化物(2D TMDs)因其独特的性质和广泛的潜在应用而受到广泛关注。研究最多的过渡金属二硫属化物之一是二硫化钼(MoS)。二维 MoS 纳米片具有与石墨烯互补的独特性质,使其成为理想的电极材料,可能在许多电化学应用中带来重大益处。这些特性包括可调带隙、大表面积、相对较高的电子迁移率以及良好的光学和催化特性。尽管 2D MoS 纳米片的使用具有许多优势和优异的性能,但 2D MoS 的表面功能化是进一步提高其性能并为所制造的传感器表面添加额外功能的潜在途径。用各种金属和金属氧化物纳米结构对材料进行功能化对其整体电化学性能有重大影响,可改善各种传感参数,如选择性、灵敏度和稳定性。在这篇综述中,探讨和讨论了制备二维层状 MoS 纳米材料的不同方法,以及这些纳米材料的不同表面功能化方法。最后,讨论了过去十年中结构-性质关系和电化学传感器应用。重点介绍了 2D MoS 的性能相对于电化学传感器的性能,从而为不同学科的研究人员提供了对这种独特材料的新见解,并为基于 MoS 的传感器的发展提供了基础。