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Hybrid Reduced Graphene Oxide with Special Magnetoresistance for Wireless Magnetic Field Sensor 被引量:1
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作者 Songlin Yang mingyan tan +3 位作者 Tianqi Yu Xu Li Xianbin Wang Jin Zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第5期177-190,共14页
Very few materials show large magnetoresistance(MR)under a low magnetic field at room temperature,which causes the barrier to the development of magnetic field sensors for detecting low-level electromagnetic radiation... Very few materials show large magnetoresistance(MR)under a low magnetic field at room temperature,which causes the barrier to the development of magnetic field sensors for detecting low-level electromagnetic radiation in real-time.Here,a hybrid reduced graphene oxide(rGO)-based magnetic field sensor is produced by in situ deposition of FeCo nanoparticles(NPs)on reduced graphene oxide(rGO).Special quantum magnetoresistance(MR)of the hybrid rGO is observed,which unveils that Abrikosov's quantum model for layered materials can occur in hybrid rGO;meanwhile,the MR value can be tunable by adjusting the particle density of FeCo NPs on rGO nanosheets.Very high MR value up to 21.02±5.74%at 10 kOe at room temperature is achieved,and the average increasing rate of resistance per kOe is up to 0.9282ΩkOe^-1.In this paper,we demonstrate that the hybrid rGO-based magnetic field sensor can be embedded in a wireless system for real-time detection of low-level electromagnetic radiation caused by a working mobile phone.We believe that the two-dimensional nanomaterials with controllable MR can be integrated with a wireless system for the future connected society. 展开更多
关键词 Large MAGNETORESISTANCE MAGNETIC NANOCRYSTALS Reduced graphene OXIDE WIRELESS MAGNETIC field sensor
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“去伪存真”——一种共价有机聚合物荧光防伪材料的实验探讨 被引量:1
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作者 陈燕 谭名言 +1 位作者 唐安娜 孔德明 《大学化学》 CAS 2023年第1期161-168,共8页
通过学生熟悉的羟醛缩合反应制备共价有机聚合物(COP)荧光材料;指导学生在实践中深化对理论知识的理解,学会自主思考和利用多种仪器分析荧光材料性质;引导学生发挥想象力,将荧光材料应用到与生活息息相关的信息加密中——“去伪存真”,... 通过学生熟悉的羟醛缩合反应制备共价有机聚合物(COP)荧光材料;指导学生在实践中深化对理论知识的理解,学会自主思考和利用多种仪器分析荧光材料性质;引导学生发挥想象力,将荧光材料应用到与生活息息相关的信息加密中——“去伪存真”,体验化学的魅力。 展开更多
关键词 实验设计 荧光材料 羟醛缩合 信息加密
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