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基于石墨烯用于微弱能量获取的柔性微结构研究

娄利飞 潘青彪 吴志华

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基于石墨烯用于微弱能量获取的柔性微结构研究

娄利飞, 潘青彪, 吴志华

A flexible microstructure based on graphene for harvesting weak energy

Lou Li-Fei, Pan Qing-Biao, Wu Zhi-Hua
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  • 本文首次提出了一种基于石墨烯用于微弱能量获取的柔性基板/石墨烯/ZnO纳米线/石墨烯的柔性微结构. 首先,从理论上进行了该新结构的设计及其工作原理分析;其次,研究了该结构制备过程中的关键工艺,并设计了该结构的制备流程;最后,成功制备了该结构,并进行了相关测试. 最终测试结果表明该结构能够成功输出数百毫伏的电压. 这些理论和实验上的研究为自驱动微纳系统提供了研究基础,同时也对集成微纳系统的实用化发展具有一定的研究意义.
    A novel microstructure of flexible substrate/graphene/ZnO nanowires/graphene multilayer film for harvesting weak energy is for the first time presented as far as we know in this paper. First, the design of this microstructure and its operational principle is discussed theoretically. Next, we study the key technology in the preparation process of this microstructure and carry out the whole preparation process. Finally, the microstructure is successfully achieved and tested. Results show that the output voltage of the microstructure can be up to several hundreds of millivolt. In a word, the theoretical and experimental research of this microstructure provides a basis for self-powered micro-nano systems, and is significant to the practical development of the integrated micro-nano systems.
    • 基金项目: 中央高校基本科研业务费专项资金(批准号:K5051225011)和国家自然科学基金重点项目(批准号:61334003)资助的课题.
    • Funds: Project supported by the Fundamental Research Funds for the Central Universities of Ministry of Education of China (Grant No.K5051225011), and the Key Program of the National Natural Science Foundation of China(Grant No. 61334003).
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    Wang Z L 2006 Physics 35 897 (in Chinese) [王中林 2006 物理 35 897]

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    Wang Z L (translated by Wang Z L, Qin Y, Hu Y F) 2012 Nanogenerators for self-powered devices and systems (Beijing: Science Press) pp1-7 (in Chinese) [王中林著(王中林, 秦勇, 胡又凡译) 2012自驱动系统中的纳米发电机(北京: 科学出版社)第1–7页]

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    Yu H L, Zhu J Q, Cao W X, Han J C 2013 Acta Phys. Sin. 62 028201 (in Chinese) [于海玲, 朱嘉琦, 曹文鑫, 韩杰才 2013 物理学报 62 028201]

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    Sun L F, Dong L M, Wu Z F, Fang C 2013 Chin. Phys. B 22 077201

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    [14]

    Mason C 2009 B. S. Dissertation (Atlanta: Georgia Institute of Technology)

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    Kumar B, Lee K Y, Park H K, Chae S J, Lee Y H, Kim S W 2011 ACS Nano 5 4197

    [16]
    [17]

    Park K I, Lee M, Liu Y, Moon S, Hwang G T, Zhu G, Kim J E, Kim S O, Kim D K, Wang Z L, Lee K J 2012 Adv. Mater. 24 2999

    [18]
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    Kathalingam A, Valanarasu S, Senthilkumar V, Rhee J K 2013 Materials Chemistry and Physics 138 262

    [21]

    Wu H Q, Linghu C Y, Lu H M, Qian H 2013 Chin. Phys. B 22 098106

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    Xue S J, Fang L, LongX M, Lu Y, Wu F, Li W J, Zuo J Q, Zhang S F 2014 Chin. Phys. Lett. 31 028501

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    [25]
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    Pang Y Y 2011 Chinese Journal of Liquid Crystals and Displays 26 296 (in Chinese) [庞渊源 2011 液晶与显示 26 296]

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    Kim K S, Zhao Y, Jang H, Lee S Y, Kim J M, Kim K, Ahn J H, Kim P, Choi J Y, Hong B H 2009 Nature 457 706

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    Bae J, Park Y J, Lee M, Cha S N, Choi Y J, Lee C S, Kim J M, Wang Z L 2011 Adv. Mater. XX 1

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    Choi D, Choi M Y, Choi W M, Shin H J, Park H K, Seo J S, Park J, Yoon S M, Chae S J, Lee Y H, Kim S W, Choi J Y, Lee S Y, Kim J M 2010 Adv. Mater 22 2187

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    Chen X B, He Y, Zhang W F 2008 Micronanoelectronic Technology 45 590 (in Chinese) [谌小斑, 贺英, 张文飞 2008 微纳电子技术 45 590]

    [35]

    Qin J M, Tian L F, Zhao D X, Jiang D Y, Cao J M, Ding M, Guo Z 2011 Acta Phys. Sin. 60 107307 (in Chinese) [秦杰明, 田立飞, 赵东旭, 蒋大勇, 曹建明, 丁梦, 郭振 2011 物理学报 60 107307]

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计量
  • 文章访问数:  4845
  • PDF下载量:  696
  • 被引次数: 0
出版历程
  • 收稿日期:  2014-02-21
  • 修回日期:  2014-04-08
  • 刊出日期:  2014-08-05

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