Center for Commercialization of Fluorescence Technologies, Department of Molecular Biology and immunology, University of North Texas Health Science Center, 3500 Camp Bowie Blvd, Fort Worth, Texas 76107, USA.
Nanoscale. 2013 Apr 21;5(8):3441-6. doi: 10.1039/c3nr34152f. Epub 2013 Mar 8.
BSA protected gold nanoclusters (Au25) are attracting a great deal of attention due to their unique spectroscopic properties and possible use in biophysical applications. Although there are reports on synthetic strategies, spectroscopy and applications, little is known about their polarization behavior. In this study, we synthesized the BSA protected Au25 nanoclusters and studied their steady state and time resolved fluorescence properties including polarization behavior in different solvents: glycerol, propylene glycol and water. We demonstrated that the nanocluster absorption spectrum can be separated from the extinction spectrum by subtraction of Rayleigh scattering. The nanocluster absorption spectrum is well approximated by three Gaussian components. By a comparison of the emissions from BSA Au25 clusters and rhodamine B in water, we estimated the quantum yield of nanoclusters to be higher than 0.06. The fluorescence lifetime of BSA Au25 clusters is long and heterogeneous with an average value of 1.84 μs. In glycerol at -20 °C the anisotropy is high, reaching a value of 0.35. However, the excitation anisotropy strongly depends on the excitation wavelengths indicating a significant overlap of the different transition moments. The anisotropy decay in water reveals a correlation time below 0.2 μs. In propylene glycol the measured correlation time is longer and the initial anisotropy depends on the excitation wavelength. BSA Au25 clusters, due to long lifetime and high polarization, can potentially be used in studying large macromolecules such as protein complexes with large molecular weight.
BSA 保护的金纳米团簇 (Au25) 由于其独特的光谱性质和在生物物理应用中的潜在用途而引起了极大的关注。尽管有关于合成策略、光谱和应用的报道,但对其极化行为知之甚少。在这项研究中,我们合成了 BSA 保护的 Au25 纳米团簇,并研究了它们在不同溶剂中的稳态和时间分辨荧光性质,包括极化行为:甘油、丙二醇和水。我们证明可以通过减去瑞利散射来分离纳米团簇的吸收光谱和消光光谱。纳米团簇的吸收光谱可以很好地用三个高斯分量来近似。通过比较 BSA Au25 团簇和水中罗丹明 B 的发射,我们估计纳米团簇的量子产率高于 0.06。BSA Au25 团簇的荧光寿命长且不均匀,平均值为 1.84μs。在-20°C 的甘油中,各向异性很高,达到 0.35。然而,激发各向异性强烈依赖于激发波长,表明不同跃迁矩之间存在明显的重叠。在水中的各向异性衰减揭示了低于 0.2μs 的相关时间。在丙二醇中,测量的相关时间较长,初始各向异性取决于激发波长。BSA Au25 团簇由于寿命长且极化度高,可能用于研究大分子量的大分子,如具有大分子量的蛋白质复合物。