Chen Lu, Chen Feng, Ying Shaoming, Liang Ruowen, Yan Guiyang, Wang Xuxu, Xia Yuzhou
Department of Chemistry, Fujian Province University Key Laboratory of Green Energy and Environment Catalysis, Ningde Normal University, Ningde 352100, PR China.
State Key Laboratory of Photocatalysis on Energy and Environment, Fuzhou University, Fuzhou 350002, PR China.
Dalton Trans. 2023 Jan 3;52(2):290-296. doi: 10.1039/d2dt03129a.
The rapid recombination of photogenerated carriers and strong photocorrosion have considerably limited the practical application of CdS in the field of photocatalysis. Loading a cocatalyst has been widely utilized to largely enhance photocatalytic activity. In the present work, a WC@C cocatalyst was prepared by a novel molten salt method and explored as an efficient noble-metal-free cocatalyst to significantly enhance the photocatalytic hydrogen evolution rate of CdS nanorods. The WC@C/CdS composite photocatalyst with a 7 wt% content of WC@C showed the highest photocatalytic hydrogen evolution rate of 8.84 mmol g h, which was about 21 and 31 times higher than those of CdS and 7 wt% Pt/CdS under visible light irradiation. A high apparent quantum efficiency (AQY) of 55.28% could be achieved under 420 nm monochromatic light. Furthermore, the photocatalytic activity of the 7 wt% WC@C/CdS photocatalyst exhibited good stability for 12 consecutive cycles of the photocatalytic experiment with a total reaction time of 42 h. The excellent photocatalytic performance of the photocatalyst was attributed to the formation of a Schottky junction and the loading cocatalyst, which not only accelerated the separation of the photogenerated carrier but also provided a reactive site for hydrogen evolution. This work revealed that WC@C could act as an excellent cocatalyst for enhancing the photocatalytic activity of CdS nanorods.
光生载流子的快速复合和严重的光腐蚀极大地限制了硫化镉在光催化领域的实际应用。负载助催化剂已被广泛用于大幅提高光催化活性。在本工作中,通过一种新型熔盐法制备了WC@C助催化剂,并将其作为一种高效的无贵金属助催化剂进行探索,以显著提高硫化镉纳米棒的光催化析氢速率。WC@C含量为7 wt%的WC@C/CdS复合光催化剂在可见光照射下表现出最高的光催化析氢速率,为8.84 mmol g⁻¹ h⁻¹,分别约为硫化镉和7 wt% Pt/CdS的21倍和31倍。在420 nm单色光下可实现55.28%的高表观量子效率(AQY)。此外,7 wt% WC@C/CdS光催化剂的光催化活性在光催化实验连续12个循环、总反应时间为42 h的情况下表现出良好的稳定性。该光催化剂优异的光催化性能归因于肖特基结的形成和负载的助催化剂,这不仅加速了光生载流子的分离,还为析氢提供了反应位点。这项工作表明WC@C可作为增强硫化镉纳米棒光催化活性的优异助催化剂。