Zhang Yujia, Liu Yan, Zhang Ting, Gong Xueqin, Wang Zeyan, Liu Yuanyuan, Wang Peng, Cheng Hefeng, Dai Ying, Huang Baibiao, Zheng Zhaoke
State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, People's Republic of China.
Center for Optics Research and Engineering, Shandong University, Qingdao, 266237, People's Republic of Chin.
Nano Lett. 2023 Feb 22;23(4):1244-1251. doi: 10.1021/acs.nanolett.2c04313. Epub 2023 Feb 9.
Oxygen vacancies (OVs) on specific sites/facets can strengthen the interaction between reactants and oxide surfaces, facilitating interfacial charge transfer. However, precise monitoring of the spatial distribution of OVs remains a grand challenge. We report here that a single-particle spectroscopy technique addresses this challenge by establishing a positive correlation relationship between defects and bound exciton luminescence across different facets. Taking monoclinic BiVO as an example, on the basis of theoretical guidance, by in situ tracking the PL lifetimes and PL spectra of different facets on single particles before and after hydrogen treatment, we provide evidence that the PL emission originates from the OV state and determine that OVs is more inclined to be generated at the {010} facets. This anisotropic defect engineering significantly prolongs the lifetime of carriers and accelerates the activation of molecular oxygen. These findings not only verify preference rules of OVs in metal oxides but also provide a time-space-resolved monitoring method.
特定位点/晶面上的氧空位(OVs)可以增强反应物与氧化物表面之间的相互作用,促进界面电荷转移。然而,精确监测OVs的空间分布仍然是一个巨大的挑战。我们在此报告,一种单粒子光谱技术通过在不同晶面上建立缺陷与束缚激子发光之间的正相关关系来应对这一挑战。以单斜相BiVO为例,在理论指导的基础上,通过原位跟踪氢处理前后单粒子不同晶面的PL寿命和PL光谱,我们提供了证据表明PL发射源自OV态,并确定OVs更倾向于在{010}晶面上产生。这种各向异性缺陷工程显著延长了载流子的寿命,并加速了分子氧的活化。这些发现不仅验证了金属氧化物中OVs的偏好规则,还提供了一种时空分辨监测方法。