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  • qingqing-juan
    2012/05/20
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  • 悬赏金额:10积分状态:已解决
  • 【序号】:1
    【作者】:Baoyou Geng , Jun Liu , Yanyan Zhao and Chunhua Wang
    【题名】:A room-temperature chemical route to homeeous core–shell Cu2O structures and their application in biosensors
    【期刊】: CrystEngComm
    【年、卷、期、起止页码】:2011,13, 697-701 Received 05 Jul 2010, Accepted 02 Sep 2010
    【全文链接】:http://pubs.rsc.org/en/content/articlelanding/2011/ce/c0ce00372g

    【序号】:2
    【作者】:Shuling Xu, Sixiu Sun,Guozhu Chen, Xinyu Song
    【题名】:Rapid room-temperature fabrication of Cu2O–Au core–shell nanospheres
    【期刊】: Journal of Crystal Growth
    【年、卷、期、起止页码】:Volume 311, Issue 9, 15 April 2009, Pages 2742–2745
    【全文链接】:http://www.sciencedirect.com/science/article/pii/S0022024809003005

    【序号】:3
    【作者】:Yao Qin , Renchao Che , Chongyun Liang , Jie Zhang and Zhiwei Wen
    【题名】:Synthesis of Au and Au–CuO cubic microcages via an in situ sacrificial template approach
    【期刊】: J. Mater. Chem.
    【年、卷、期、起止页码】:2011,21, 3960-3965 Received 25 Sep 2010, Accepted 06 Jan 2011
    【全文链接】:http://pubs.rsc.org/en/content/articlelanding/2011/jm/c0jm03211e

    【序号】:4
    【作者】:Yao Qin , Renchao Che , Chongyun Liang , Jie Zhang and Zhiwei Wen
    【题名】:Cu2O microcrystals: a versatile class of self-templates for the synthesis of porous Au nanocages with various morphologies
    【期刊】: RSC Adv.,
    【年、卷、期、起止页码】:2011,1, 1119-1125Received 01 Jun 2011, Accepted 15 Aug 2011
    【全文链接】:http://pubs.rsc.org/en/content/articlelanding/2011/ra/c1ra00250c

xlxiu 2012/05/20

A room-temperature chemical route to homeeous core–shell Cu[sub]2[/sub]O structures and their application in biosensors

yilai1002 2012/05/20

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  • xlxiu

    第1楼2012/05/20

    A room-temperature chemical route to homeeous core–shell Cu2O structures and their application in biosensors

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  • xlxiu

    第2楼2012/05/20

    Synthesis of Au and Au–CuO cubic microcages via an in situ sacrificial template approach

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  • xlxiu

    第3楼2012/05/20

    Cu2O microcrystals: a versatile class of self-templates for the synthesis of porous Au nanocages with various morphologies

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