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Dive into the research topics where Dongzhan Zhou is active.

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Featured researches published by Dongzhan Zhou.


Journal of Vacuum Science & Technology. B. Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena | 2017

Preparation and effects of O2 flow on the electrical characteristics of Li doped MgZnO thin film transistors

Longjie Tian; Song Gao; Yaobin Ma; Qi Wang; Dongzhan Zhou; Ran Li; Xiqing Zhang; Yongsheng Wang

In this paper, the authors attempt to fabricate thin film transistors using Li doped MgZnO (MgZnO:Li) as the active layer. The MgZnO:Li films were deposited by the radio frequency magnetron sputtering technique at room temperature. As the ideal active layer thickness is controlled at 35 nm, the mechanism on the electrical characteristic transition induced by Ar/O2 mixed plasma treatment was discussed. The results confirm that the appropriate sputtering Ar/O2 gas flow ratio (30/3) could compensate for the intrinsic defects in the channel, which is beneficial to MgZnO:Li thin film transistors. In addition, the fabricated device exhibited the best performance with a saturation mobility of 12.9 cm2/V s, a threshold voltage of −15 V, and a large on/off current ratio of 2.5 × 107.


Materials Letters | 2015

High-quality ZnO thin film grown on sapphire by hydrothermal method

Huaihao Wu; Zuofu Hu; Bin Li; Hailong Wang; Yunfei Peng; Dongzhan Zhou; Xiqing Zhang


Applied Surface Science | 2014

Fabrication and electrical characterization of Li–N dual doped ZnO thin film transistor

Dongzhan Zhou; Bo Li; Hailong Wang; M. Salik; Huaihao Wu; Zuofu Hu; Song Gao; Yunfei Peng; Lixin Yi; Xiqing Zhang; Yongsheng Wang


Ceramics International | 2017

Preparation and effects of post-annealing temperature on the electrical characteristics of Li–N co-doped ZnSnO thin film transistors

Shiqian Dai; Tao Wang; Ran Li; Dongzhan Zhou; Yunfei Peng; Hailong Wang; Xiqing Zhang; Yongsheng Wang


Journal of Alloys and Compounds | 2015

Effects of channel layer thickness and time on the electrical characteristics of ZnO: (Li, N) TFT

Dongzhan Zhou; Bin Li; Hailong Wang; Yunfei Peng; Jianwei Zhao; M. Salik; Lixin Yi; Xiqing Zhang; Yongsheng Wang


Superlattices and Microstructures | 2017

Effects of annealing temperature on the electrical characteristics of Li–N co-doped polycrystalline ZnO thin film transistors

Longjie Tian; Dongzhan Zhou; Yaobin Ma; Xiqing Zhang; Yongsheng Wang


Journal of Alloys and Compounds | 2017

Fabrication and electrical characteristics of Li-N co-doped InZnO TFTs prepared by radio frequency magnetron

Yaobin Ma; Longjie Tian; Qi Wang; Ran Li; Shiqian Dai; Tao Wang; Hailong Wang; Dongzhan Zhou; Xiqing Zhang; Yongsheng Wang


Solid-state Electronics | 2015

Effect of annealing temperature on the electrical properties of In–Zn–Li–O thin film transistors

Bin Li; Hailong Wang; Dongzhan Zhou; Zuofu Hu; Huaihao Wu; Yunfei Peng; Lixin Yi; Xiqing Zhang; Yongsheng Wang


Journal of Alloys and Compounds | 2018

Preparation and electrical properties of N-doped ZnSnO thin film transistors

Shiqian Dai; Tao Wang; Ran Li; Qi Wang; Yaobin Ma; Longjie Tian; Jinbao Su; Ye Wang; Dongzhan Zhou; Xiqing Zhang; Yongsheng Wang


Journal of Electronic Materials | 2016

Fabrication and Electrical Characterization of InZnO:N Thin Film Transistors Prepared by Radio Frequency Magnetron Sputtering

Yunfei Peng; Hailong Wang; Wenqi Zhang; Bin Li; Dongzhan Zhou; Xiqing Zhang; Yongsheng Wang

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Dive into the Dongzhan Zhou's collaboration.

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Xiqing Zhang

Beijing Jiaotong University

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Yongsheng Wang

Beijing Jiaotong University

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Hailong Wang

Beijing Jiaotong University

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Bin Li

Beijing Jiaotong University

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Yunfei Peng

Beijing Jiaotong University

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Huaihao Wu

Beijing Jiaotong University

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Lixin Yi

Beijing Jiaotong University

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Longjie Tian

Beijing Jiaotong University

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Ran Li

Beijing Jiaotong University

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Yaobin Ma

Beijing Jiaotong University

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