Park Jinwoo, Choi Mi, Hwang Cheong-Soo
Department of Chemistry, Dankook University, Cheonan 31116, South Korea.
J Nanosci Nanotechnol. 2018 Sep 1;18(9):6137-6141. doi: 10.1166/jnn.2018.15618.
In this study, water-dispersible manganese (II) ion-doped ZnS nanocrystals (ZnS:Mn NCs) were synthesized by capping the surface with L-glycine molecules at various pH conditions. The UV-Visible and solution photoluminescence (PL) spectra showed broad peaks approximately at 330 and 590 nm, respectively. The calculated relative quantum efficiencies were in the range of 4.9∼5.8%, and the average particle sizes measured from the HR-TEM images were about 8 nm. Moreover, the surface charges of the corresponding ZnS:Mn-Gly NCs were determined by the electrophoretic method as: (-)14.8 mV (pH 2), (-)9.5 mV (pH 5), and (-)6.4 mV (pH 10) respectively. The most negatively charged ZnS:Mn-Gly-pH 2 NCs were applied as a fluorescence sensor to detect copper (II) ions in water by an exclusive luminescence quenching effect. In addition, photocatalytic activity of the ZnS:Mn-Gly-pH 2 NCs was also evaluated by measuring the degradation rate of an organic dye (methylene blue, MB) molecule under the UV light irradiation. The ZnS:Mn-Gly-pH 2 NCs showed the photodegradation efficiency of the MB molecule with a pseudo-first-order reaction constant (kobs) of 4.3 × 10-4 min-1, which is higher than those of other amino acids-capped ZnS:Mn NCs at the same conditions.
在本研究中,通过在不同pH条件下用L-甘氨酸分子包覆表面,合成了水分散性锰(II)离子掺杂的硫化锌纳米晶体(ZnS:Mn NCs)。紫外可见光谱和溶液光致发光(PL)光谱分别在约330和590 nm处显示出宽峰。计算得到的相对量子效率在4.9%至5.8%范围内,从高分辨透射电子显微镜(HR-TEM)图像测得的平均粒径约为8 nm。此外,通过电泳法测定相应的ZnS:Mn-Gly NCs的表面电荷分别为:(-)14.8 mV(pH 2)、(-)9.5 mV(pH 5)和(-)6.4 mV(pH 10)。电荷最负的ZnS:Mn-Gly-pH 2 NCs作为荧光传感器,通过独特的发光猝灭效应检测水中的铜(II)离子。此外,还通过测量有机染料(亚甲基蓝,MB)分子在紫外光照射下的降解速率,评估了ZnS:Mn-Gly-pH 2 NCs的光催化活性。ZnS:Mn-Gly-pH 2 NCs对MB分子的光降解效率具有4.3×10-4 min-1的准一级反应速率常数(kobs),高于相同条件下其他氨基酸包覆的ZnS:Mn NCs。