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曹艺严

工程师

xmcyy@xmu.edu.cn

物理大楼 226

2183166

个人主页:

研究领域 纳米材料生长与性能研究

教育和工作经历
2006.9-2010.7 厦门大学物理系,获学士学位;
2010.9-2013.6 厦门大学物理系无线电物理专业,获硕士研究生学位;
2013.8-至今 厦门大学物理系任职
代表性文章或专著
1. Cao, Y. , Zhiming Wu∗,  Ni, J. ,  Bhutto, W. A. ,  Jing, L. , &  Li, S. , et al. Type-II core/shell nanowire heterostructures and their photovoltaic applications. Nano-Micro Letters, 2012(3):7.
2. Wu Z ,  Wang W ,  Cao Y , et al. A beyond near-infrared response in a wide-bandgap ZnO/ZnSe coaxial nanowire solar cell by pseudomorphic layers[J]. Journal of Materials Chemistry A, 2014, 2(35):14571-14576.
3. Bhutto W A ,  Wu Z ,  Cao Y , et al. Beneficial effect of alloy disorder on the conversion efficiency of ZnO/ZnxCd1-xSe coaxial nanowire solar cells[J]. Journal of Materials Chemistry A, 2015, 3(12).
4. Wang W ,  Cao Y ,  Wu Z , et al. Ultrawide photoresponse in ZnO/ZnSe coaxial nanowires with a threshold of 0.8 eV[J]. International Journal of Hydrogen Energy, 2015, 40(34):10788-10794.
5. Liu, Q. ,  Zheng, X. ,  He, J. ,  Wang, W. ,  Fu, M. , &  Cao, Y. , et al. Enhanced magneto-optical effects in composite coaxial nanowires embedded with ag nanoparticles[J]. Scientific Reports, 2016, 6:29170.
6.  He, J. , Zheng, X. , Hong, X. , Wang, W. , Cao, Y. , & Chen, T. , et al. Enhanced field emission of ZnO nanowire arrays by the control of their structures[J]. Materials Letters, 2017, 216(APR.1):182-184.
姓名 曹艺严 职称职务 工程师
邮箱 xmcyy@xmu.edu.cn 办公室 物理大楼 226
电话 2183166 个人主页
其他信息 研究方向岗位职责 纳米材料生长与性能研究
教育和工作经历 2006.9-2010.7 厦门大学物理系,获学士学位;
2010.9-2013.6 厦门大学物理系无线电物理专业,获硕士研究生学位;
2013.8-至今 厦门大学物理系任职
代表性文章或专著 1. Cao, Y. , Zhiming Wu∗,  Ni, J. ,  Bhutto, W. A. ,  Jing, L. , &  Li, S. , et al. Type-II core/shell nanowire heterostructures and their photovoltaic applications. Nano-Micro Letters, 2012(3):7.
2. Wu Z ,  Wang W ,  Cao Y , et al. A beyond near-infrared response in a wide-bandgap ZnO/ZnSe coaxial nanowire solar cell by pseudomorphic layers[J]. Journal of Materials Chemistry A, 2014, 2(35):14571-14576.
3. Bhutto W A ,  Wu Z ,  Cao Y , et al. Beneficial effect of alloy disorder on the conversion efficiency of ZnO/ZnxCd1-xSe coaxial nanowire solar cells[J]. Journal of Materials Chemistry A, 2015, 3(12).
4. Wang W ,  Cao Y ,  Wu Z , et al. Ultrawide photoresponse in ZnO/ZnSe coaxial nanowires with a threshold of 0.8 eV[J]. International Journal of Hydrogen Energy, 2015, 40(34):10788-10794.
5. Liu, Q. ,  Zheng, X. ,  He, J. ,  Wang, W. ,  Fu, M. , &  Cao, Y. , et al. Enhanced magneto-optical effects in composite coaxial nanowires embedded with ag nanoparticles[J]. Scientific Reports, 2016, 6:29170.
6.  He, J. , Zheng, X. , Hong, X. , Wang, W. , Cao, Y. , & Chen, T. , et al. Enhanced field emission of ZnO nanowire arrays by the control of their structures[J]. Materials Letters, 2017, 216(APR.1):182-184.
科研基金及项目 任教课程
招生方向 荣誉奖励