Liu Di, Chen Liping, Chen Wenbin, Qin Mengtao, Wei Siqi
School of Chemical & Environmental Engineering, China University of Mining & Technology (Beijing), Beijing 100083, PR China.
Dalton Trans. 2021 Mar 21;50(11):4008-4016. doi: 10.1039/d0dt04356g. Epub 2021 Mar 2.
Well-dispersed Pt quantum dots (QDs) were the first to be successfully deposited onto a PDI supramolecular nanorods surface via a simple in situ chemical reduction. Under visible light irradiation, Pt QDs/PDI composites displayed excellent photocatalytic property in the degradation of phenol. The optimum 1 wt% Pt QDs/PDI composite was found to be 6.2 times greater than pure PDI supramolecular nanorods for the degradation rate constant (k). The enhanced photocatalytic performance can be attributed to the rapid transfer and efficient separation of photogenerated carriers, originating from the effective trapping and transporting of electrons by Pt QDs. At the same time, Pt QDs were also loaded as active sites during the photocatalytic reaction. Moreover, the 1 wt% Pt QDs/PDI composite was found to have high photocatalytic stability and cycle utilization, suggesting its great potential in the area of water environmental purification.
分散良好的铂量子点(QDs)首先通过简单的原位化学还原成功沉积在聚二异氰酸酯(PDI)超分子纳米棒表面。在可见光照射下,铂量子点/聚二异氰酸酯复合材料在苯酚降解方面表现出优异的光催化性能。发现最佳的1 wt%铂量子点/聚二异氰酸酯复合材料的降解速率常数(k)比纯聚二异氰酸酯超分子纳米棒大6.2倍。光催化性能的增强可归因于光生载流子的快速转移和有效分离,这源于铂量子点对电子的有效捕获和传输。同时,铂量子点在光催化反应中也作为活性位点负载。此外,发现1 wt%铂量子点/聚二异氰酸酯复合材料具有高光催化稳定性和循环利用率,表明其在水环境净化领域具有巨大潜力。