Wang Qi, Li Bihan, Zhang Ping, Zhang Wenming, Hu Xiaoru, Li Xiaochen
College of Water Conservancy and Civil Engineering, Shandong Agricultural University Tai'an Shandong 271018 PR China
College of Life Science, Shandong Agricultural University Tai'an Shandong 271018 PR China.
RSC Adv. 2020 Jul 23;10(46):27538-27551. doi: 10.1039/d0ra05230b. eCollection 2020 Jul 21.
A novel, efficient and stable 2D black phosphorus and tungsten trioxide heterojunction (WO-BPNs) was successfully synthesized using a combined hydrothermal, liquid phase exfoliating and co-precipitation method. The as-obtained WO-BPNs composite was characterized by using XRD, SEM, XPS, UV-vis, The results showed that the bandgap energy of the WO-BPNs50 sample was 2.2 eV, which was lower than that of pure WO. BPNs in the WO-BPNs heterojunction as a co-catalyst effectively enhanced photo-generated electron-hole pairs separation. The synthesized WO-BPNs sample significantly improved the photocatalytic performance in degrading rhodamine B (RhB) and metoprolol (MET) compared to pure WO and BPNs under visible-light. The maximum RhB and MET removal efficiencies were 92% and 87%, respectively, in the WO-BPNs50 (added 50 mL BPNs dispersion) sample within 120 minutes. The relevant photocatalysis mechanisms were discussed. In addition, the intermediate products in the MET photodegradation process were investigated by LC-MS technology, and the degradation pathway of MET was proposed.
采用水热、液相剥离和共沉淀相结合的方法成功合成了一种新型、高效且稳定的二维黑磷与三氧化钨异质结(WO-BPNs)。利用X射线衍射(XRD)、扫描电子显微镜(SEM)、X射线光电子能谱(XPS)、紫外可见光谱(UV-vis)对所制备的WO-BPNs复合材料进行了表征。结果表明,WO-BPNs50样品的带隙能量为2.2电子伏特,低于纯WO的带隙能量。WO-BPNs异质结中的BPNs作为助催化剂有效地增强了光生电子-空穴对的分离。与纯WO和BPNs相比,所合成的WO-BPNs样品在可见光下显著提高了降解罗丹明B(RhB)和美托洛尔(MET)的光催化性能。在120分钟内,WO-BPNs50(添加50毫升BPNs分散液)样品中RhB和MET的最大去除效率分别为92%和87%。讨论了相关的光催化机理。此外,通过液相色谱-质谱联用(LC-MS)技术研究了MET光降解过程中的中间产物,并提出了MET的降解途径。