School of Chemical and Biomedical Engineering, Nanyang Technological University, 637457 Singapore.
Langmuir. 2011 Nov 15;27(22):13861-7. doi: 10.1021/la203143k. Epub 2011 Oct 24.
We report the synthesis of cetyltrimethylammonium bromide (CTAB) assisted seed mediated growth of highly pure and monodispersed quasispherical gold nanoparticles (QAuNPs) and their self-assembly on the silica/glass substrates. The seed-mediated growth approach was modified to prepare size-tunable monodispersed QAuNPs with sizes ranging from 20 to 150 nm. The larger, more uniform seeds and lower CTAB concentration resulted in the formation of relatively large QAuNPs with improved monodispersity (relative standard deviation (RSD) of ∼5-8%) and high purity in their shapes. In addition, CATB-capped QAuNPs can be spontaneously assembled into closely packed and highly aligned superstructures with well-defined mutillayers (two to six layers) on silica substrates. Furthermore, CATB-capped QAuNPs can easily construct density-controllable QAuNP chips by electrostatic self-assembly, showing their promising applications for single-nanoparticle plasmonic sensors.
我们报告了十六烷基三甲基溴化铵(CTAB)辅助的种子介导生长法,用于合成高纯度和单分散的类球形金纳米粒子(QAuNPs),并将其自组装在二氧化硅/玻璃基底上。我们对种子介导生长法进行了改进,以制备尺寸可调的单分散 QAuNPs,尺寸范围从 20 到 150nm。较大、更均匀的种子和较低的 CTAB 浓度导致形成相对较大的 QAuNPs,其形状具有更好的单分散性(相对标准偏差(RSD)约为 5-8%)和高纯度。此外,CATB 封端的 QAuNPs 可以在二氧化硅基底上自组装成紧密堆积和高度对准的超结构,具有良好定义的多层(两到六层)。此外,CATB 封端的 QAuNPs 可以通过静电自组装容易地构建密度可控的 QAuNP 芯片,显示出它们在单纳米粒子等离子体传感器中的应用前景。