Shi Yunfeng, Tu Chunlai, Wang Ruibin, Wu Jiayan, Zhu Xinyuan, Yan Deyue
School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, People's Republic of China.
Langmuir. 2008 Oct 21;24(20):11955-8. doi: 10.1021/la801952v. Epub 2008 Sep 17.
A new strategy for the synthesis of CdS nanocrystals (NCs) within supramolecular self-assembly nanoreactors has been described. The self-assembly nanoreactors were readily constructed through the electrostatic interactions and ion pairs between palmitic acid and the terminal amine groups of hyperbranched polymer. In a chloroform/water two-phase system, aqueous Cd (2+) ions were spontaneously encapsulated into the cavities of self-assembly nanoreactors in chloroform. After reaction with S (2-) ions, the CdS NCs with high stability were obtained. By the addition of excess triethylamine, CdS NCs formed in the self-assembly nanoreactors were transferred from organic phase into aqueous phase. After dialysis and rotorary evaporation, aqueous CdS NCs could be redispersed into chloroform solution containing palmitic acid.
描述了一种在超分子自组装纳米反应器中合成硫化镉纳米晶体(NCs)的新策略。通过棕榈酸与超支化聚合物末端胺基之间的静电相互作用和离子对,易于构建自组装纳米反应器。在氯仿/水两相体系中,水溶液中的镉(2+)离子自发地被包裹在氯仿中自组装纳米反应器的腔内。与硫(2-)离子反应后,获得了具有高稳定性的硫化镉NCs。通过加入过量的三乙胺,自组装纳米反应器中形成的硫化镉NCs从有机相转移到水相。经过透析和旋转蒸发后,水性硫化镉NCs可重新分散到含有棕榈酸的氯仿溶液中。