Sorbonne Université, CNRS, Laboratoire de Réactivité de Surface, LRS, F-75005 Paris, France.
Nanoscale. 2019 Mar 14;11(11):5102-5115. doi: 10.1039/c8nr09998g.
The nature of defects in ZnO smoke was studied at different stages of the material's history by combining photoluminescence (PL) and electron paramagnetic resonance (EPR) spectroscopy. In contrast to studies previously reported on ZnO nanopowders, high vacuum conditions (P < 10-5 mbar) have been applied during sample storage, handling and spectroscopic investigations. Two pairs of violet-PL/EPR signals (2.88 eV/ g = 1.956 and 2.80 eV/ g = 1.960) were observed in the as-synthesized ZnO powder and attributed to surface (dominant) and bulk zinc interstitials (Zni+). Upon annealing in O2-poor conditions, green-PL emission (2.41 eV) and EPR signal at g = 2.002 develop along with EPR signals specific of superoxide radicals (O2-). In the absence of any external O2 supply, the oxygen necessary for the creation of a notable amount of O2- is provided by the lattice of ZnO smoke, so that the green emission and its EPR counterpart are unambiguously assigned to singly charged oxygen vacancies (VO+). Annealing at high PO2 results in a broad PL emission (∼2.07 eV) without an EPR counterpart. This yellow emission was assigned to peroxide-like surface species (O22-). Overall, this study shows that the visible emissions in ZnO smoke nanopowders can range from violet, over green to yellow as a function of sample history and that the corresponding PL/EPR fingerprints can serve as guidelines for the recognition of defects in other ZnO types.
采用光致发光(PL)和电子顺磁共振(EPR)光谱学相结合的方法,在材料不同历史阶段研究了 ZnO 烟雾中的缺陷性质。与之前报道的 ZnO 纳米粉末研究不同,在样品储存、处理和光谱研究过程中应用了高真空条件(P < 10-5 mbar)。在合成的 ZnO 粉末中观察到两对紫 PL/EPR 信号(2.88 eV/ g = 1.956 和 2.80 eV/ g = 1.960),归因于表面(主要)和体锌间隙(Zni+)。在贫氧条件下退火时,沿绿光 PL 发射(2.41 eV)和 g = 2.002 处的 EPR 信号发展,同时出现超氧自由基(O2-)的 EPR 信号。在没有任何外部 O2 供应的情况下,形成可观数量的 O2-所需的氧气由 ZnO 烟雾的晶格提供,因此绿光发射及其 EPR 对应物明确归因于单电荷氧空位(VO+)。在高 PO2 下退火会导致宽 PL 发射(∼2.07 eV)而没有 EPR 对应物。这种黄绿光发射被分配给过氧化物样表面物种(O22-)。总的来说,这项研究表明,作为样品历史的函数,ZnO 烟雾纳米粉末中的可见发射可以从紫到绿到黄变化,相应的 PL/EPR 特征可作为识别其他 ZnO 类型缺陷的指南。