Department of Physical and Analytical Chemistry, University of Oviedo, Julian Claveria 8, 33006 Oviedo, Spain.
Nanotechnology. 2013 Dec 13;24(49):495601. doi: 10.1088/0957-4484/24/49/495601. Epub 2013 Nov 14.
A one-step aqueous synthesis of highly fluorescent water-soluble copper nanoclusters (CuNCs) is here described, based on direct reduction of the metal precursor with NaBH4 in the presence of bidentate ligands (made of lipoic acid anchoring groups, appended with a poly(ethylene glycol) short chain). A complete optical and structural characterization was carried out: the optical emission was centred at 416 nm, with a luminescence quantum yield in water of 3.6% (the highest one reported so far in water for this kind of nanocluster). The structural characterization reveals a homogeneous size distribution (of 2.5 nm diameter) with spherical shape. The CuNCs obtained offer long-term stability (the luminescence emission remained unaltered after more than two months) under a broad range of chemical conditions (e.g., stored at pH 3-12 or even in a high ionic strength medium such as 1 M NaCl) and high photostability, keeping their fluorescence emission intact after more than 2 h of daylight and UV-light exposition. All those advantageous features warrant synthesized CuNCs being promising fluorescent nanoprobes for further developments including (bio)applications.
一步水相合成高荧光水溶性铜纳米团簇(CuNCs),以金属前体在双齿配体(由连接有短链聚乙二醇的硫辛酸锚固基团组成)存在下直接用 NaBH4 还原为基础。进行了全面的光学和结构表征:光发射中心位于 416nm,在水中的荧光量子产率为 3.6%(迄今为止,对于这种纳米团簇,在水中报道的最高值)。结构表征表明其具有均匀的尺寸分布(直径为 2.5nm)和球形形状。所获得的 CuNCs 在广泛的化学条件下(例如,在 pH 值为 3-12 的条件下储存,甚至在高离子强度介质如 1M NaCl 中)具有长期稳定性(超过两个月后,荧光发射没有变化),并且具有高的光稳定性,在日光和紫外光暴露超过 2 小时后仍保持其荧光发射完整。所有这些有利的特征都保证了合成的 CuNCs 成为有前途的荧光纳米探针,可进一步开发(生物)应用。