Shaanxi Key Laboratory of Energy Chemical Process Intensification, School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an, 710049, China.
Engineering Research Center of New Energy System Engineering and Equipment, University of Shaanxi Province, Xi'an, Shaanxi, 710049, China.
Small. 2022 Aug;18(34):e2202956. doi: 10.1002/smll.202202956. Epub 2022 Jul 30.
The disulfide compounds of molybdenum (MoS ) are layered van der Waals materials that exhibit a rich array of polymorphic structures. MoS can be roughly divided into semiconductive phase and metallic phase according to the difference in electron filling state of the 4d orbital of Mo atom. The two phases show completely different properties, leading to their diverse applications in biosensors. But to some extent, they compensate for each other. This review first introduces the relationship between phase state and the chemical/physical structures and properties of MoS . Furthermore, the synthetic methods are summarized and the preparation strategies for metastable phases are highlighted. In addition, examples of electronic and chemical property designs of MoS by means of doping and surface modification are outlined. Finally, studies on biosensors based on MoS in recent years are presented and classified, and the roles of MoS with different phases are highlighted. This review offers references for the selection of materials to construct different types of biosensors based on MoS , and provides inspiration for sensing performance enhancement.
钼的二硫化物(MoS )是层状范德华材料,具有丰富的多晶型结构。根据钼原子 4d 轨道电子填充状态的差异,MoS 大致可分为半导体相和金属相。这两个相表现出完全不同的性质,导致它们在生物传感器中有不同的应用。但在某种程度上,它们是相互补充的。本综述首先介绍了相态与 MoS 的化学/物理结构和性能之间的关系。此外,还总结了合成方法,并强调了亚稳相的制备策略。此外,还概述了通过掺杂和表面修饰来设计 MoS 的电子和化学性质的实例。最后,介绍了近年来基于 MoS 的生物传感器的研究,并进行了分类,突出了不同相 MoS 的作用。本综述为基于 MoS 构建不同类型生物传感器的材料选择提供了参考,并为提高传感性能提供了启示。