Le Phuoc Huu, Hieu Le Trung, Lam Tu-Ngoc, Hang Nguyen Thi Nhat, Truong Nguyen Van, Tuyen Le Thi Cam, Phong Pham Thanh, Leu Jihperng
Ceramics and Biomaterials Research Group, Advanced Institute of Materials Science, Ton Duc Thang University, Ho Chi Minh City 700000, Vietnam.
Faculty of Applied Sciences, Ton Duc Thang University, Ho Chi Minh City 700000, Vietnam.
Micromachines (Basel). 2018 Nov 24;9(12):618. doi: 10.3390/mi9120618.
Nitrogen-doped TiO₂ nanotube arrays (N-TNAs) were successfully fabricated by a simple thermal annealing process in ambient N₂ gas at 450 °C for 3 h. TNAs with modified morphologies were prepared by a two-step anodization using an aqueous NH₄F/ethylene glycol solution. The N-doping concentration (0⁻9.47 at %) can be varied by controlling N₂ gas flow rates between 0 and 500 cc/min during the annealing process. Photocatalytic performance of as-prepared TNAs and N-TNAs was studied by monitoring the methylene blue degradation under visible light (λ ≥ 400 nm) illumination at 120 mW·cm. N-TNAs exhibited appreciably enhanced photocatalytic activity as compared to TNAs. The reaction rate constant for N-TNAs (9.47 at % N) reached 0.26 h, which was a 125% improvement over that of TNAs (0.115 h). The significant enhanced photocatalytic activity of N-TNAs over TNAs is attributed to the synergistic effects of (1) a reduced band gap associated with the introduction of N-doping states to serve as carrier reservoir, and (2) a reduced electron‒hole recombination rate.
通过在450℃的环境氮气中进行简单的热退火处理3小时,成功制备了氮掺杂二氧化钛纳米管阵列(N-TNAs)。使用NH₄F/乙二醇水溶液通过两步阳极氧化制备具有改性形态的TNAs。通过在退火过程中控制氮气流量在0至500 cc/min之间,可以改变氮掺杂浓度(0⁻9.47原子%)。通过监测在120 mW·cm的可见光(λ≥400 nm)照射下亚甲基蓝的降解情况,研究了所制备的TNAs和N-TNAs的光催化性能。与TNAs相比,N-TNAs表现出明显增强的光催化活性。N-TNAs(9.47原子% N)的反应速率常数达到0.26 h⁻¹,比TNAs(0.115 h⁻¹)提高了125%。N-TNAs相对于TNAs显著增强的光催化活性归因于以下协同效应:(1)与引入氮掺杂态作为载流子库相关的带隙减小,以及(2)电子-空穴复合率降低。