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高k栅介质中电荷俘获行为的脉冲特征分析 被引量:1
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作者 Yuegang Zhao Chadwin D Young +1 位作者 Rino Choi byoung hun lee 《电子设计应用》 2010年第1期76-78,共3页
本文介绍了电荷俘获的原理以及直流特征分析技术对俘获电荷进行定量分析的局限性,同时介绍了脉冲I-V分析技术,其能够对具有快速瞬态充电效应(FTCE)的高k栅晶体管的本征(无俘获)性能进行特征分析。
关键词 电荷俘获 脉冲 高k栅
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Charge transfer in graphene/polymer interfaces for CO2 detection
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作者 Myungwoo Son Yusin Pak +12 位作者 Sang-Soo Chee Francis Malar Auxilia Kihyeun Kim Byung-Kee lee Sungeun lee Sun Kil Kang Chaedeok lee Jeong Soo lee Ki Kang Kim Yun Hee Jang byoung hun lee Gun-Young Jung Moon-Ho Ham 《Nano Research》 SCIE EI CAS CSCD 2018年第7期3529-3536,共8页
Understanding charge transfer processes between graphene and functional materials is crucial from the perspectives of fundamental sciences and potential applications, including electronic devices, photonic devices, an... Understanding charge transfer processes between graphene and functional materials is crucial from the perspectives of fundamental sciences and potential applications, including electronic devices, photonic devices, and sensors. In this study, we present the charge transfer behavior of graphene and amine-rich polyethyleneimine (PEI) upon CO2 exposure, which was significantly improved after introduction of hygroscopic polyethylene glycol (PEG) in humid air. By blending PEI and PEG, the number of protonated amine groups in PEI was remarkably increased in the presence of water molecules, leading to a strong electron doping effect on graphene. The presence of CO2 gas resulted in a large change in the resistance of PEI/PEG-co-functionalized graphene because of the dramatic reduction of said doping effect, reaching a maximum sensitivity of 32% at 5,000 ppm CO2 and an applied bias of 0.1 V in air with 60% relative humidity at room temperature. This charge transfer correlation will facilitate the development of portable graphene-based sensors for real-time gas detection and the extension of the applications of graphene-based electronic and photonic devices. 展开更多
关键词 GRAPHENE polyethyleneimine (PEI) polyethylene glycol carbon dioxide charge transfer
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