吴昱昆

作品数:4被引量:2H指数:1
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供职机构:中国科学技术大学更多>>
发文主题:ZNOUVS-MILDGRAPHENE_OXIDE更多>>
发文领域:理学一般工业技术更多>>
发文期刊:《Chinese Journal of Chemical Physics》更多>>
所获基金:国家自然科学基金国家重点基础研究发展计划更多>>
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High Performance of Enhanced Mode Field Effect Transistor and Ultraviolet Sensor Based on ZnO Nanosheet
《Chinese Journal of Chemical Physics》2015年第1期1-5,I0001,共6页高志伟 吴昱昆 李俊文 王晓平 
ZnO nanosheets with thickness of a few nanometers are prepared by vapor transport and condensation method, and their structure and optical properties are well characterized. Field effect transistor (FET) and ultravi...
关键词:ZNO NANOSHEETS Field effect transistor UV sensor 
Probe the Effects of Surface Adsorbates on ZnO Nanowire Conductivity using Dielectric Force Microscopy
《Chinese Journal of Chemical Physics》2014年第5期582-586,I0004,共6页陈琪 卢威 吴昱昆 丁怀义 王兵 陈立桅 
Characterization of electric properties of nanomaterials usually involves fabricating field effect transistors (FET) and deriving materials properties from device performances. However, the quality of electrode cont...
关键词:Dielectric force microscopy ZnO nanowire Field-effect transistor Surface adsorbate 
High Performance Ultraviolet Photodetector Fabricated with ZnO Nanoparticles-graphene Hybrid Structures被引量:1
《Chinese Journal of Chemical Physics》2013年第2期225-230,I0004,共7页刘金养 于欣欣 张光辉 吴昱昆 张琨 潘楠 王晓平 
This work is supported by MOST of China (No.2011CB921403), the Chinese Academy of Science, and the National Natural Science Foundation of China (No.10874165, No.90921013, No.11074231, and No. 11004179).
Ultraviolet (UV) photodetector constructed by ZnO material has attracted intense research and commercial interest. However, its photoresistivity and photoresonse are still unsatisfied. Herein, we report a novel meth...
关键词:ZnO nanoparticle Reduced graphite oxide Hybrid structure UV photodector 
A Green and Mild Approach of Synthesis of Highly-Conductive Graphene Film by Zn Reduction of Exfoliated Graphite Oxide被引量:1
《Chinese Journal of Chemical Physics》2012年第4期494-500,I0004,共8页耿志刚 张光辉 林岳 于欣欣 任文贞 吴昱昆 潘楠 王晓平 
V. ACKNOWLEDGMENTS This work is supported by the Ministry of Science and Technologyh of China (No.2011CB921403), the National Natural Science Foundation of China (No.10874165, No.90921013, No.11074231, and No.11004179) and Chinese Academy of Sciences .
We report a simple and green approach to synthesize reduced graphene oxide (RGO) nanosheets at room temperature based on Zn reduction of exfoliated GO. The evolution of GO to RGO has been characterized by X-ray diff...
关键词:Graphene oxide REDUCTION Zn powder 
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