Fan Ming-Ming, Liu Ke-Wei, Chen Xing, Wang Xiao, Zhang Zhen-Zhong, Li Bing-Hui, Shen De-Zhen
State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Dongnanhu Road 3888, Changchun, 130033, People's Republic of China.
University of Chinese Academy of Sciences , Beijing, 100049, People's Republic of China.
ACS Appl Mater Interfaces. 2015 Sep 23;7(37):20600-6. doi: 10.1021/acsami.5b04671. Epub 2015 Sep 9.
Mixed-phase ZnMgO (m-ZMO) thin films with a single absorption edge tuning from ∼3.9 to ∼4.8 eV were realized on a-face sapphire (a-Al2O3) by plasma-assisted molecular beam epitaxy. The small lattice mismatch of both ZnO and MgO with a-Al2O3 should be responsible for the single and controllable absorption edge. Metal-semiconductor-metal (MSM) photodetectors were fabricated based on these m-ZMO films, and the devices have the single cutoff wavelength, which can be tuned from 335 to 275 nm. These devices possess low dark current (78 pA for m-Z0.67M0.33O, 11 pA for m-Z0.59M0.41O, and 4 pA for m-Z0.39M0.61O at 40 V) and high responsivity (434 A/W for m-Z0.67M0.33O, 89.8 A/W for m-Z0.59M0.41O, and 3.7 A/W for m-Z0.39M0.61O at 40 V). Further response study reveals that the 90-10% decay time of m-Z0.67M0.33O, m-Z0.59M0.41O, and m-Z0.39M0.61O is around 37, 30, and 0.7 ms, respectively. Large amounts of heterojunction interfaces between wurtzite ZMO and cubic rock-salt ZMO could be responsible for the low dark current and high responsivity of our mixed-phase devices. The excellent comprehensive performance of m-ZMO UV photodetectors on a-Al2O3 suggests that m-ZMO UV photodetectors should have great applied potential.
通过等离子体辅助分子束外延在a面蓝宝石(a-Al₂O₃)上实现了具有从约3.9到约4.8 eV单一吸收边调谐的混合相ZnMgO(m-ZMO)薄膜。ZnO和MgO与a-Al₂O₃的小晶格失配应是单一且可控吸收边的原因。基于这些m-ZMO薄膜制备了金属-半导体-金属(MSM)光电探测器,这些器件具有可从335 nm调谐到275 nm的单一截止波长。这些器件具有低暗电流(在40 V时,m-Z0.67M0.33O为78 pA,m-Z0.59M0.41O为11 pA,m-Z0.39M0.61O为4 pA)和高响应度(在40 V时,m-Z0.67M0.33O为434 A/W,m-Z0.59M0.41O为89.8 A/W,m-Z0.39M0.61O为3.7 A/W)。进一步的响应研究表明,m-Z0.67M0.33O、m-Z0.59M0.41O和m-Z0.39M0.61O的90 - 10%衰减时间分别约为37、30和0.7 ms。纤锌矿型ZMO和立方岩盐型ZMO之间大量的异质结界面可能是我们混合相器件低暗电流和高响应度的原因。m-ZMO紫外光电探测器在a-Al₂O₃上的优异综合性能表明m-ZMO紫外光电探测器应具有很大的应用潜力。