Department of Chemistry and Biochemistry, Florida State University, 95 Chieftan Way, Tallahassee, Florida 32306, USA.
ACS Nano. 2012 Oct 23;6(10):8950-61. doi: 10.1021/nn302954n. Epub 2012 Sep 26.
We have used one phase growth reaction to prepare a series of silver nanoparticles (NPs) and luminescent nanoclusters (NCs) using sodium borohydride (NaBH(4)) reduction of silver nitrate in the presence of molecular scale ligands made of polyethylene glycol (PEG) appended with lipoic acid (LA) groups at one end and reactive (-COOH/-NH(2)) or inert (-OCH(3)) functional groups at the other end. The PEG segment in the ligand promotes solubility in a variety of solvents including water, while LAs provide multidentate coordinating groups that promote Ag-ligand complex formation and strong anchoring onto the NP/NC surface. The particle size and properties were primarily controlled by varying the Ag-to-ligand (Ag:L) molar ratios and the molar amount of NaBH(4) used. We found that while higher Ag:L ratios produced NPs, luminescent NCs were formed at lower ratios. We also found that nonluminescent NPs can be converted into luminescent clusters, via a process referred to as "size focusing", in the presence of added excess ligands and reducing agent. The nanoclusters emit in the far red region of the optical spectrum with a quantum yield of ~12%. They can be redispersed in a number of solvents with varying polarity while maintaining their optical and spectroscopic properties. Our synthetic protocol also allowed control over the number and type of reactive functional groups per nanocluster.
我们使用单相生长反应,在分子尺度配体的存在下,用硼氢化钠(NaBH(4))还原硝酸银,制备了一系列银纳米粒子(NPs)和发光纳米团簇(NCs)。这些配体由一端带有聚乙二醇(PEG)和二硫辛酸(LA)基团,另一端带有反应性(-COOH/-NH(2))或惰性(-OCH(3))官能团的分子组成。配体中的 PEG 段促进了在各种溶剂中的溶解度,包括水,而 LA 提供了多齿配位基团,促进了 Ag-配体复合物的形成和在 NP/NC 表面的强锚固。颗粒尺寸和性质主要通过改变 Ag 与配体的摩尔比(Ag:L)和使用的 NaBH(4)的摩尔量来控制。我们发现,虽然较高的 Ag:L 比产生 NPs,但在较低的比下形成了发光 NCs。我们还发现,在添加过量配体和还原剂的情况下,非发光 NPs 可以通过称为“尺寸聚焦”的过程转化为发光团簇。这些纳米团簇在光学光谱的远红光区域发射,量子产率约为 12%。它们可以在不同极性的许多溶剂中再分散,同时保持其光学和光谱性质。我们的合成方案还允许控制每个纳米团簇的反应性官能团的数量和类型。