School of Optical and Electronic Information , Huazhong University of Science and Technology , Wuhan , Hubei 430074 , China.
ACS Appl Mater Interfaces. 2018 Sep 26;10(38):32516-32525. doi: 10.1021/acsami.8b09442. Epub 2018 Sep 13.
Tunable plasmonic resonance induced by the collective oscillation of the electrons on metallic nanostructures can excellently enhance the light response of ZnO films, which provides an effective way to break through the limitation of the performance of ZnO photodetectors. Here, broad-band high-performance ZnO/Au heterostructures photodetectors with various morphologies of self-assembled Au nanoantennas are fabricated via a facile approach under the spin-coated ZnO colloidal quantum dots films. With a systematic control on growth condition, the self-assembled Au nanoantennas undergo a drastic evolution from the corrugated nanomounds to the island-like nanostructures, and the light absorption of the resulting ZnO/Au heterostructures correspondingly exhibits a strongly morphological dependence on the Au nanoantennas. Meanwhile, the photoresponse of the ZnO-based photodetectors is significantly improved throughout a wide spectrum between UV and visible regions owing to the enhanced light absorption induced by the localized surface plasmon resonance. As a result, the optimal switch ratio of the ZnO/Au heterostructures photodetector increases by 1 order to ∼1.13 × 10 than that of the pristine ZnO one because of the obviously increased photocurrent ( I) and comparable dark current, thus leading to ∼9.1 and ∼4.9 times increases in the photoresponsivity and the normalized detectivity. Meanwhile, the significant increases in the I of ∼5.2 and ∼9.7 times are likewise observed with the ZnO/Au heterostructures under 530 nm and white-light illumination. This work can offer a handy and effective approach for the fabrication of ultrasensitive ZnO-based photodetectors within a broad-band wavelength by utilizing the Au plasmonic nanostructures.
可调谐的等离子体激元共振可以通过金属纳米结构中电子的集体振荡来实现,它可以极好地增强 ZnO 薄膜的光响应,为突破 ZnO 光电探测器性能的限制提供了有效的途径。在这里,通过一种简单的旋涂 ZnO 胶体量子点薄膜方法,制备了具有各种自组装 Au 纳米天线形貌的宽带高性能 ZnO/Au 异质结构光电探测器。通过对生长条件的系统控制,自组装的 Au 纳米天线从波纹纳米丘演变为岛状纳米结构,由此产生的 ZnO/Au 异质结构的光吸收强烈依赖于 Au 纳米天线的形态。同时,由于局域表面等离子体共振引起的光吸收增强,基于 ZnO 的光电探测器在紫外到可见光谱范围内的光响应得到了显著改善。结果,由于光电流(I)明显增加和暗电流相当, ZnO/Au 异质结构光电探测器的最佳开关比增加了 1 个数量级,达到了1.13×10,从而使光响应率和归一化探测率分别提高了9.1 倍和4.9 倍。同时,在 530nm 和白光照射下, ZnO/Au 异质结构的 I 也分别显著增加了5.2 和~9.7 倍。这项工作为利用 Au 等离子体纳米结构在宽带波长范围内制备超灵敏 ZnO 基光电探测器提供了一种简便有效的方法。