80电影天堂网,少妇高潮一区二区三区99,jαpαnesehd熟女熟妇伦,无码人妻精品一区二区蜜桃网站

相關(guān)鏈接
聯(lián)系方式
  • 通信地址:上海市松江區(qū)人民北路2999號(hào)東華大學(xué)3號(hào)學(xué)院樓化工學(xué)院樓2107
  • 郵編:201620
  • 電話(huà):021-67792614
  • 傳真:
  • Email:bjliu@dhu.edu.cn
當(dāng)前位置:> 首頁(yè) > 論文著作 > 正文
LBJG-036 Fabrication of 3D Bi5O7I/BiOIO3 heterojunction material with enhanced photocatalytic activity towards tetracycline antibiotics
作者:Zhijia Zhu;Chenmiao Zhu,Lingfeng Yan,Chunyan Hu,Baojiang Liu
關(guān)鍵字:photocatalyst
論文來(lái)源:期刊
具體來(lái)源:Separation and Purification Technology
發(fā)表時(shí)間:2021年
Exploring the efficient and sustainable photocatalysts is the key pot for the improvement of photocatalytic efficiency. In this work, a series of Bi5O7I/BiOIO3 composite materials were successfully prepared via a mild hydrothermal method to make layered BiOIO3 nanosheets uniformly grown in-situ on the smooth surface of Bi5O7I microrods. The electronic channel at the interface constructed by the in-situ growth could drastically shorten the distance of electron transmission to accelerate the electron transfer. The formation of Bi5O7I/BiOIO3 heterojunction was determined via the characterization of the composition and photochemical analysis. Benefited from this structure, the Bi5O7I/BiOIO3 with the mass ratio of 1:1 exhibited over 90% efficiency in degradation of 4 different antibiotics after irradiation for 120 min. After that, 5 cycles proved that Bi5O7I/BiOIO3 has excellent stability and reusability, which can guarantee the application in the practical process. Finally, the electron migration path and photocatalytic mechanism of the catalyst are inferred base on the capture experiment and ESR test, which proposed that h+ and ·O2- were the primary active species in the photocatalytic process and confirmed the formation of Z-type heterojunctions between Bi5O7I and BiOIO3. The heterostructure with well-matched band structure enhances the separation and migration of photogenerated charges, which contributes to improve the photocatalytic activity. The design of novel photocatalyst with high efficiency and low-toxicity provides a new approach to achieve full utilization of solar energy and efficient environmental purification.