Chandra Moumita, Bhunia Kousik, Pradhan Debabrata
Materials Science Centre , Indian Institute of Technology , Kharagpur , 721302 West Bengal , India.
Inorg Chem. 2018 Apr 16;57(8):4524-4533. doi: 10.1021/acs.inorgchem.8b00283. Epub 2018 Apr 5.
Photocatalytic hydrogen (H) generation through water splitting has attracted substantial attention as a clean and renewable energy generation process that has enormous potential in converting solar-to-chemical energy using suitable photocatalysts. The major bottleneck in the development of semiconductor-based photocatalysts lies in poor light absorption and fast recombination of photogenerated electron-hole pairs. Herein we report the synthesis of CuS/TiO heterostructured nanocomposites with varied TiO contents via simple hydrothermal and solution-based process. The morphology, crystal structure, composition, and optical properties of the as-synthesized CuS/TiO hybrids are evaluated in detail. Controlling the CuS/TiO ratio to an optimum value leads to the highest photocatalytic H production rate of 1262 μmol h g, which is 9.7 and 9.3 times higher than that of pristine TiO nanospindles and CuS nanoflakes under irradiation, respectively. The enhancement in the H evolution rate is attributed to increased light absorption and efficient charge separation with an optimum CuS coverage on TiO. The photoluminescence and photoelectrochemical measurements further confirm the efficient separation of charge carriers in the CuS/TiO hybrid. The mechanism and synergistic role of CuS and TiO semiconductors for enhanced photoactivity is further delineated.
通过光催化水分解产生氢气(H)作为一种清洁且可再生的能源生产过程,在利用合适的光催化剂将太阳能转化为化学能方面具有巨大潜力,因而备受关注。基于半导体的光催化剂发展的主要瓶颈在于光吸收较差以及光生电子 - 空穴对的快速复合。在此,我们报道了通过简单的水热法和基于溶液的过程合成了具有不同TiO含量的CuS/TiO异质结构纳米复合材料。对合成的CuS/TiO杂化物的形态、晶体结构、组成和光学性质进行了详细评估。将CuS/TiO比例控制在最佳值时,可实现最高的光催化产氢速率1262 μmol h g,分别比光照下原始TiO纳米纺锤体和CuS纳米片的产氢速率高9.7倍和9.3倍。析氢速率的提高归因于光吸收的增加以及在TiO上具有最佳CuS覆盖率时电荷的有效分离。光致发光和光电化学测量进一步证实了CuS/TiO杂化物中电荷载流子的有效分离。进一步阐述了CuS和TiO半导体增强光活性的机理和协同作用。