Deng Fang, Lu Xiaoying, Zhong Fei, Pei Xule, Luo Xubiao, Luo Shenglian, Dionysiou Dionysios D, Au Chaktong
Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle, Nanchang Hangkong University, Nanchang 330063, People's Republic of China.
Nanotechnology. 2016 Feb 12;27(6):065701. doi: 10.1088/0957-4484/27/6/065701. Epub 2015 Dec 18.
A series of two-dimensional (2D) interlaced BiOCl/carbon quantum dot composites (denoted as BiOCl/CQD composites) were synthesized by a template-free coprecipitation method at room temperature, and the influence of different particle size distributions of the CQDs on the physiochemical properties and photocatalytic activities of the BiOCl/CQD composites was studied. CQDs can change the morphology and increase the specific surface area of the BiOCl/CQD composites. Moreover, the particle size distribution of the CQDs (CQD loading amount) has some effect on the light absorption, separation of photogenerated charge carriers, and photocatalytic performance of the BiOCl/CQD composites. The optimized size distribution of the CQDs is 50-150 nm. BiOCl/CQD (50-150 nm) composites showed the best improvement of light absorption and the highest photocurrent density of 0.44 μA cm(-2), and exhibited the highest photocatalytic activity with almost 100% 2-nitrophenol removal under visible-light irradiation. The high efficacy of BiOCl/CQD (50-150 nm) composites could be attributed to their excellent light absorption and highly effective separation of photogenerated charge carriers.
通过室温下的无模板共沉淀法合成了一系列二维(2D)交错的BiOCl/碳量子点复合材料(记为BiOCl/CQD复合材料),并研究了碳量子点不同粒径分布对BiOCl/CQD复合材料理化性质和光催化活性的影响。碳量子点可以改变BiOCl/CQD复合材料的形貌并增加其比表面积。此外,碳量子点的粒径分布(碳量子点负载量)对BiOCl/CQD复合材料的光吸收、光生电荷载流子的分离以及光催化性能有一定影响。碳量子点的优化粒径分布为50-150nm。BiOCl/CQD(50-150nm)复合材料表现出最佳的光吸收改善效果,光电流密度最高可达0.44μA cm(-2),并且在可见光照射下对2-硝基苯酚的去除率几乎达到100%,展现出最高的光催化活性。BiOCl/CQD(50-150nm)复合材料的高效性可归因于其优异的光吸收和光生电荷载流子的高效分离。