基于二维材料的红外探测器研究:进展与挑战OA
Research on Infrared Detectors Based on 2D Materials:Progress and Challenges
红外探测器在军事、工业、医疗等领域发挥着至关重要的作用,但传统红外探测材料存在局限,例如:硅基材料仅覆盖近红外波段;HgCdTe材料难以实现大尺寸制备,且需在低温条件下工作;InSb的室温性能差,需深度制冷,导致红外探测系统因需配备复杂的制冷组件而变得复杂且昂贵.在众多红外探测材料中,二维材料凭借原子级厚度、可调带隙、宽光谱响应等优势,已成为突破瓶颈的关键材料.本文综述了基于二维材料的红外探测器的研究进展.首先介绍了光电导、光伏等5种核心工作机制;其次,解析了响应度、比探测率等关键性能指标;再次,分析了石墨烯、过渡金属硫族化合物和黑磷 3类代表性二维材料探测器;最后,针对二维材料光吸收弱、暗电流大等问题,探讨了器件优化策略,并对基于二维材料的红外探测器进行了简要总结和展望.
Infrared detectors play a crucial role in military,industrial,and medical fields.However,traditional infrared detection materials have limitations.The silicon-based materials only cover the near-infrared range.HgCdTe is difficult to fabricate in large sizes and requires low-temperature operation.And InSb exhibits poor performance at room temperature,requiring deep cooling,which results in complex and expensive systems.Among infrared detection materials,two dimensional(2D)materials,with their advantages such as atomic-level thickness,tunable bandgap,and wide spectral response,have emerged as a key to breaking through these bottlenecks.This paper reviews the research progress of infrared detectors based on 2D materials.The review first introduces 5 core working mechanisms,including photoconduction and photovoltaic effects,followed by an analysis of key performance metrics such as responsivity and specific detectivity.Then,3 representative types of 2D material detectors such as graphene,transition metal dichalcogenides(TMDs),and black phosphorus are examined.Subsequently,addressing issues like weak light absorption and high dark current in 2D materials,device optimization strategies are explored.Finally,the paper provides a brief summary and outlook on 2D material-based infrared detectors.
付鑫;乔晓轲;李申奥;张淼;唐子渊;陈明;杨春雷;钟国华
深圳大学 深圳 518055||中国科学院深圳先进技术研究院 深圳 518055中国科学院深圳先进技术研究院 深圳 518055||中国科学技术大学 合肥 230026中国科学院深圳先进技术研究院 深圳 518055||中国科学院大学 北京 100049中国科学院深圳先进技术研究院 深圳 518055||中国科学院大学 北京 100049中国科学院深圳先进技术研究院 深圳 518055中国科学院深圳先进技术研究院 深圳 518055||中国科学院大学 北京 100049中国科学院深圳先进技术研究院 深圳 518055||中国科学院大学 北京 100049中国科学院深圳先进技术研究院 深圳 518055||中国科学院大学 北京 100049
通用工业技术
2D材料红外探测器工作机制性能优化异质结宽波段探测
2D materialsinfrared detectorworking mechanismperformance optimizationheterojunctionbroadband photodetection
《集成技术》 2026 (3)
126-142,17
国家自然科学基金项目(52173243,52573287)"广东特支计划"青年拔尖人才项目(2023TQ07A142)中国科学院青年创新促进会项目(2023375) This work is supported by National Natural Science Foundation of China(52173243,52573287),Guangdong Special Support Plan for Young Top-Talent Project(2023TQ07A142),Youth Innovation Promotion Association,Chinese Academy of Sciences(2023375)
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