Huo Yuping, Yu Tanlai, Xue Yueyuan, Zhang Guoshuai, Song Shengxin, Shao Yonghua, Han Xiaojing
Department of Chemical and Materials Engineering, Lyuliang University Lishi Shanxi 033001 China
Institute of New Carbon-based Materials and Zero-carbon and Negative-carbon Technology, Lyuliang University Lishi Shanxi 033001 China.
RSC Adv. 2024 Aug 16;14(35):25811-25819. doi: 10.1039/d4ra03261f. eCollection 2024 Aug 12.
Photocatalytic degradation technology, as one of the most important advanced oxidation technologies for environmental remediation, has attracted great attention in recent years, but designing photocatalysts with excellent photocatalytic activity and good reusability remains a challenge. Herein, three CoS/CoO microspheres (CoS/CoO-M-1 (1), CoS/CoO-M-2 (2), and CoS/CoO-M-3 (3)) were prepared a hydrothermal method using cobalt chloride hexahydrate, thiourea, deionized water and polyethylene glycol (PEG) with different polymerization degrees as raw materials, which have a uniform size distribution in the range of 5-24 μm and specific surface areas of 6.1924 m g (1), 6.2870 m g (2) and 6.6663 m g (3). It is worth noting that all the three CoS/CoO microspheres showed a wide optical absorption range from the ultraviolet to the near-infrared (NIR) region and a high photocatalytic activity for degrading methyl blue under visible light (500 W metal halide lamp) irradiation. In order to improve the portability and recyclability of 3, a mixed matrix membrane (MMM) of 3 (3-MMM) was manufactured by coating a mixture dispersion of 3 and polyvinylidene fluoride (PVDF) on a glass substrate, which not only displayed excellent photocatalytic degradation performance, but also showed good portability and reusability (cycles > 12 times). Furthermore, adsorption and photocatalytic kinetics and possible mechanisms were studied.
光催化降解技术作为环境修复领域最重要的高级氧化技术之一,近年来备受关注,但设计具有优异光催化活性和良好可重复使用性的光催化剂仍然是一项挑战。在此,以六水合氯化钴、硫脲、去离子水和不同聚合度的聚乙二醇(PEG)为原料,采用水热法制备了三种CoS/CoO微球(CoS/CoO-M-1(1)、CoS/CoO-M-2(2)和CoS/CoO-M-3(3)),其尺寸分布均匀,在5-24μm范围内,比表面积分别为6.1924 m²/g(1)、6.2870 m²/g(2)和6.6663 m²/g(3)。值得注意的是,所有这三种CoS/CoO微球在紫外到近红外(NIR)区域均表现出较宽的光吸收范围,并且在可见光(500W金属卤化物灯)照射下对降解亚甲基蓝具有高光催化活性。为了提高3的便携性和可回收性,通过将3和聚偏氟乙烯(PVDF)的混合分散体涂覆在玻璃基板上制备了3的混合基质膜(MMM)(3-MMM),其不仅表现出优异的光催化降解性能,还具有良好的便携性和可重复使用性(循环次数>12次)。此外,还研究了吸附和光催化动力学以及可能的机理。