Division of Electronics and Electrical Engineering, Dongguk University-Seoul, Seoul, 04620, Republic of Korea.
Interface Lab, Department of Nanotechnology and Advanced Materials Engineering, Sejong University, Seoul, 05006, Republic of Korea.
Environ Pollut. 2021 Mar 1;272:116018. doi: 10.1016/j.envpol.2020.116018. Epub 2020 Nov 20.
The use of lanthanum-anchored zinc oxide distorted hexagon (La@ZnO DH) nanoclusters as an active material for the photodegradation of rhodamine B (Rh-B) dye via hydrogen bonding, electrostatic, and π-π interactions is examined herein. The active photocatalyst is derived from porous zeolite imidazole frameworks (ZIF-8) via a combined ultrasonication and calcination process. The distorted hexagon nanocluster morphology with controlled surface area is shown to provide excellent catalytic activity, chemical stability and demarcated pore volume. In addition, the low bandgap (3.57 eV) of La@ZnO DH is shown to expand the degradation of Rh-B under irradiation of UV light as compared to the pristine ZIF-8-derived ZnO photocatalyst due to inhibited recombination of electrons and holes. The outstanding physicochemical stability and enhanced performance of La@ZnO DH could be ascribed to the synergistic interaction among La3+ particles and the ZnO nanoclusters and provide a route for their utilization as a promising catalyst for the detoxification of Rh-B.
本文研究了镧锚定氧化锌扭曲六边形(La@ZnO DH)纳米团簇作为一种活性材料,通过氢键、静电和π-π相互作用,光降解罗丹明 B(Rh-B)染料。通过超声和煅烧相结合的方法,从多孔沸石咪唑酯骨架(ZIF-8)中得到了这种活性光催化剂。具有可控表面积的扭曲六边形纳米团簇形态被证明具有优异的催化活性、化学稳定性和明显的孔体积。此外,La@ZnO DH 的低带隙(3.57 eV)表明,与原始 ZIF-8 衍生的 ZnO 光催化剂相比,它在紫外光照射下能扩展 Rh-B 的降解,这是由于抑制了电子和空穴的复合。La@ZnO DH 的出色物理化学稳定性和增强的性能可归因于 La3+颗粒和 ZnO 纳米团簇之间的协同相互作用,并为它们作为 Rh-B 解毒的有前途的催化剂的应用提供了一条途径。