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Oxygen Ion Implantation Enhanced Silicon-Vacancy Photoluminescence and n-Type Conductivity of Ultrananocrystalline Diamond Films

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【作者】 胡晓君李念

【Author】 HU Xiao-Jun;LI Nian;College of Chemical Engineering and Materials Science,Zhejiang University of Technology;

【机构】 College of Chemical Engineering and Materials Science,Zhejiang University of Technology

【摘要】 We report the enhanced silicon-vacancy(Si-V) photoluminescence(PL) intensity and n-type conductivity of ultrananocrystalline diamond(UNCD) films by oxygen ion(O+) implantation.With O+ dose increasing from1014 to 1015 cm,the PL intensity and n-type conductivity significantly increase by 6 and 45 times,respectively,after 1000°C annealing.The secondary ion mass spectroscopy mapping measurements show that the content of oxygen is larger in the zone,which has larger content of silicon,indicating that oxygen tends to adhere to silicon.It is suggested that oxygen related Si-V defects are formed,which will enhance the PL intensity and n-type conductivity of UNCD Elms.

【Abstract】 We report the enhanced silicon-vacancy(Si-V) photoluminescence(PL) intensity and n-type conductivity of ultrananocrystalline diamond(UNCD) films by oxygen ion(O+) implantation.With O+ dose increasing from1014 to 1015 cm,the PL intensity and n-type conductivity significantly increase by 6 and 45 times,respectively,after 1000°C annealing.The secondary ion mass spectroscopy mapping measurements show that the content of oxygen is larger in the zone,which has larger content of silicon,indicating that oxygen tends to adhere to silicon.It is suggested that oxygen related Si-V defects are formed,which will enhance the PL intensity and n-type conductivity of UNCD Elms.

【基金】 Supported by the National Natural Science Foundation of China under Grant Nos 50972129,50602039 and 51211120188;the Qianjiang Talent Project of Zhejiang Province under Grant No 2010R10026
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2013年08期
  • 【分类号】TN304.12
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