Lang Di, Xiang Quanjun, Qiu Guohong, Feng Xionghan, Liu Fan
College of Resources and Environment, Huazhong Agricultural University, Wuhan, 430070, P. R. China.
Dalton Trans. 2014 May 21;43(19):7245-53. doi: 10.1039/c3dt53601g. Epub 2014 Mar 31.
Visible light photocatalytic H2-production from aqueous solutions is of great importance for its potential application in converting solar energy into chemical energy. In this study, a series of CdS nanostructures with different contents of wurtzite (WZ) and zinc blende (ZB) phases were successfully synthesized by a simple solvothermal route in an ethylenediamine and ethylene glycol mixed solution. The solvent volume ratio of ethylenediamine in the mixed solution (R) exhibited an obvious influence on the crystalline phase and morphology of the resulting CdS products. With increasing R, the percentage of wurtzite first increased and then decreased, whilst the morphology changed from nanoparticles to multi-armed nanorods, and finally to long rods and sheets. The prepared multi-armed CdS nanorod samples showed especially high and stable photocatalytic H2-production activity with Pt (0.25 wt%) as a co-catalyst and lactic acid aqueous solution as a sacrificial reagent under visible light irradiation. The optimized CdS nanorods with the highest percentage (64%) of the WZ phase exhibited a high H2-production rate of 231.4 μmol h(-1) (about 16.6 times higher than that of CdS nanoparticles with a low percentage (38.4%) of WZ CdS) and with a quantum efficiency (QE) of 28% at 420 nm. This high photocatalytic H2-production activity could be attributed to the results of the positive synergistic effects of the hexagonal WZ phase and morphology of multi-armed nanorods.
从水溶液中通过可见光光催化产氢对于将太阳能转化为化学能的潜在应用具有重要意义。在本研究中,通过在乙二胺和乙二醇混合溶液中采用简单的溶剂热法成功合成了一系列具有不同纤锌矿(WZ)和闪锌矿(ZB)相含量的硫化镉纳米结构。混合溶液中乙二胺的溶剂体积比(R)对所得硫化镉产物的晶相和形貌有明显影响。随着R的增加,纤锌矿的百分比先增加后降低,同时形貌从纳米颗粒变为多臂纳米棒,最后变为长棒和薄片。所制备的多臂硫化镉纳米棒样品在可见光照射下,以铂(0.25 wt%)作为助催化剂、乳酸水溶液作为牺牲试剂时,表现出特别高且稳定的光催化产氢活性。具有最高纤锌矿相百分比(64%)的优化硫化镉纳米棒表现出231.4 μmol h⁻¹的高产氢速率(比纤锌矿相百分比低(38.4%)的硫化镉纳米颗粒高约16.6倍),并且在420 nm处的量子效率(QE)为28%。这种高光催化产氢活性可归因于六方纤锌矿相和多臂纳米棒形貌的正协同效应。