Wu Ruozhen, Hao Juanyuan, Wang You
Fujian Provincial Collaborative Innovation Center of Bamboo Ecological Industry, College of Ecology and Resources Engineering, Wuyi University, Wuyishan, 354300, P. R. China.
Department of Polymer Materials and Engineering, College of Ecology and Resources Engineering, Wuyi University, Wuyishan, 354300, P. R. China.
Small. 2024 Dec;20(49):e2404821. doi: 10.1002/smll.202404821. Epub 2024 Sep 30.
2D nanomaterials have triggered widespread attention in sensing applications. Especially for 2D layered metal chalcogenides (LMCs), the unique semiconducting properties and high surface area endow them with great potential for gas sensors. The assembly of 2D LMCs with guest species is an effective functionalization method to produce the synergistic effects of hybridization for greatly enhancing the gas-sensing properties. This review starts with the synthetic techniques, sensing properties, and principles, and then comprehensively compiles the advanced achievements of the pristine 2D LMCs gas sensors. Key advances in the development of the functionalization of 2D LMCs for enhancing gas-sensing properties are categorized according to the spatial architectures. It is systematically discussed in three aspects: surface, lattice, and interlayer, to comprehend the benefits of the functionalized 2D LMCs from surface chemical effect, electronic properties, and structure features. The challenges and outlooks for developing high-performance 2D LMCs-based gas sensors are also proposed.
二维纳米材料在传感应用中引发了广泛关注。特别是对于二维层状金属硫属化合物(LMCs),其独特的半导体特性和高比表面积赋予了它们在气体传感器方面的巨大潜力。二维LMCs与客体物种的组装是一种有效的功能化方法,可产生杂化的协同效应,从而极大地增强气敏性能。本综述首先介绍了合成技术、传感特性和原理,然后全面汇编了原始二维LMCs气体传感器的先进成果。根据空间结构对二维LMCs功能化以增强气敏性能的发展中的关键进展进行了分类。从表面、晶格和层间三个方面进行了系统讨论,以从表面化学效应、电子性质和结构特征理解功能化二维LMCs的优势。还提出了开发基于二维LMCs的高性能气体传感器的挑战和展望。