With distinctive phase-change and switching properties,chalcogenide materials have emerged as critical components in various cutting-edge technologies.This review attempts to provide an overview of chalcogenide materi...With distinctive phase-change and switching properties,chalcogenide materials have emerged as critical components in various cutting-edge technologies.This review attempts to provide an overview of chalcogenide materials,from their fundamental properties to their diverse applications with focus on memory and sensing technologies,which are indispensable components in human-like electronic artificial sensory systems.After reviewing the synthesis and application of chalcogenide materials with respect to dimensionality,we focus on the key advances in(1)memory devices,including phase-change memory(PCM),ovonic threshold switching(OTS)selectors,and selector-only memory(SOM),and(2)sensing devices,including optical sensors,gas sensors,and neuromorphic sensors.Emphasis will be given on how chalcogenide materials can be integrated into next-generation systems,such as wearable platforms,artificial intelligence,and neuromorphic/quantum computing systems,to meet the growing demands for high-performance memory and multi-functional sensing.We also provide an overview of emerging research trends as well as a comprehensive perspective on the current status of research on chalcogenides.Finally,we attempt to provide insights into how chalcogenides can continue to drive technological breakthroughs in both memory and sensing applications while shaping the future landscape of intelligent systems,smart sensing platforms,and sustainable technology development.展开更多
基金supported by the National Research Foundation of Korea(NRF)grant funded by the Korean government(MSIT)(RS-2024-00358623)the Technology Innovation Program(or Industrial Strategic Technology Development Program-Development of Next Generation Intelligent Semiconductors)(20025643,Development of intelligent physical vapor deposition equipment for hard mask applications with high selectivity)funded By the Ministry of Trade,Industry&Energy(MOTIE,Korea)+2 种基金KIST intramural Grants(2V10250 and 2E33221)support from the faculty research fund of Sejong University in 2024supported by 2024 Hongik University Research Fund.Parts of elements in Figures 1 and 14 were generated using OpenAI’s generative AI tool(DALL·E)based on authorprovided descriptions.
文摘With distinctive phase-change and switching properties,chalcogenide materials have emerged as critical components in various cutting-edge technologies.This review attempts to provide an overview of chalcogenide materials,from their fundamental properties to their diverse applications with focus on memory and sensing technologies,which are indispensable components in human-like electronic artificial sensory systems.After reviewing the synthesis and application of chalcogenide materials with respect to dimensionality,we focus on the key advances in(1)memory devices,including phase-change memory(PCM),ovonic threshold switching(OTS)selectors,and selector-only memory(SOM),and(2)sensing devices,including optical sensors,gas sensors,and neuromorphic sensors.Emphasis will be given on how chalcogenide materials can be integrated into next-generation systems,such as wearable platforms,artificial intelligence,and neuromorphic/quantum computing systems,to meet the growing demands for high-performance memory and multi-functional sensing.We also provide an overview of emerging research trends as well as a comprehensive perspective on the current status of research on chalcogenides.Finally,we attempt to provide insights into how chalcogenides can continue to drive technological breakthroughs in both memory and sensing applications while shaping the future landscape of intelligent systems,smart sensing platforms,and sustainable technology development.