Wang Cai-Feng, Hu Bo
Opt Lett. 2017 Oct 1;42(19):3844-3847. doi: 10.1364/OL.42.003844.
ZnO films were inserted between the ZnS:Mn films and GaN substrates by pulsed laser deposition (PLD). The structure, morphology, and optical properties of the ZnS:Mn/ZnO/GaN nanocomposite systems have been investigated. X-ray diffraction results show that there are three diffraction peaks located at 28.4°, 34.4°, and 34.1°, which correspond to the β-ZnS(111), ZnO(002), and GaN(002) planes, respectively. Due to the insertion of ZnO films, the diffraction peak intensity of ZnS:Mn in ZnS:Mn/ZnO/GaN is stronger than that of ZnS:Mn in ZnS:Mn/GaN, and the full width at half-maximum is smaller. Though the transmittance of ZnS:Mn/ZnO films is slightly lower than that of ZnS:Mn films, the transmittance is still higher than 80%. Compared with ZnS:Mn/GaN, an ultraviolet (UV) emission at 387 nm (originated from the near-band emission of ZnO) and a green light emission at about 520 nm appeared in the photoluminescence (PL) spectra of ZnS:Mn/ZnO/GaN, in addition to the blue emission at 435 nm and the orange-red emission at 580 nm. The emission at 520 nm may be related to the deep-level emission from ZnO and the interface of ZnS:Mn/ZnO. The PL spectrum of ZnS:Mn/ZnO/GaN covers the visible region from the blue light to the red light (400-700 nm), and its color coordinate and color temperature are (0.3103,0.3063) and 6869 K, respectively, presenting strong white light emission.
通过脉冲激光沉积(PLD)将氧化锌薄膜插入硫化锌:锰薄膜与氮化镓衬底之间。对硫化锌:锰/氧化锌/氮化镓纳米复合体系的结构、形貌和光学性质进行了研究。X射线衍射结果表明,有三个衍射峰分别位于28.4°、34.4°和34.1°,它们分别对应于β-硫化锌(111)、氧化锌(002)和氮化镓(002)平面。由于插入了氧化锌薄膜,硫化锌:锰/氧化锌/氮化镓中硫化锌:锰的衍射峰强度比硫化锌:锰/氮化镓中硫化锌:锰的衍射峰强度更强,且半高宽更小。虽然硫化锌:锰/氧化锌薄膜的透过率略低于硫化锌:锰薄膜,但透过率仍高于80%。与硫化锌:锰/氮化镓相比,除了435nm处的蓝光发射和580nm处的橙红光发射外,硫化锌:锰/氧化锌/氮化镓的光致发光(PL)光谱中还出现了387nm处的紫外发射(源于氧化锌的近带发射)和约520nm处的绿光发射。520nm处的发射可能与氧化锌的深能级发射以及硫化锌:锰/氧化锌界面有关。硫化锌:锰/氧化锌/氮化镓的PL光谱覆盖了从蓝光到红光的可见光区域(400 - 700nm),其色坐标和色温分别为(0.3103,0.3063)和6869K,呈现出强烈的白光发射。