Key Laboratory of Luminescent and Real-Time Analytical Chemistry, Ministry of Education, College of Pharmaceutical Sciences, Southwest University , Chongqing 400716, China.
Anal Chem. 2017 Sep 19;89(18):9781-9787. doi: 10.1021/acs.analchem.7b01723. Epub 2017 Sep 7.
Despite a significant surge in the number of investigations into chirality at the nanoscale, especially thiolated chiral molecules capping gold clusters, only limited knowledge is currently available to elaborate the alloying effect on chiroptical behavior of bimetallic nanoparticles (NPs). Also, few successful cases as to the efforts toward the development of chirality-dependent applications on the optically active nanomaterial have been made. Herein, as a positive test case for chiral alloy nanoparticle synthesis, the stable and large chiroptical ultrafine Au-Ag alloy NPs were prepared by reduction of different molar fractions of HAuCl and AgNO with NaBH in the presence of d/l-penicillamine (d/l-Pen). Compared with those of monometallic Au and Ag counterparts with comparable size, the Au-Ag alloy NPs (Ag mole fraction, 70%) obviously displayed the largest optical activities with the maximum g-factors of ∼1.6 × 10. Impressively, the Pen-mediated synthesis of chiral Au-Ag alloy NPs possesses a colorimetric self-recognition function and can be used as an incisive circular dichroism (CD) probe toward d- and l-Pen enantiomers. The plasmonic CD signal amplification (ΔI) shows good linearity with the amount of Pen over the range of 5.0-80.0 μM with a detection limit (3σ) of 1.7 μM for l-Pen and 1.5 μM for d-Pen, respectively. In addition, the sensing system exhibits good selectivity toward d- and l-Pen in the presence of other enantiomers; therefore, it is highly expected that the approach described here would open new opportunities for design of more novel enantioselective analyses of important species related to biological processes.
尽管在手性纳米尺度的研究,特别是巯基手性分子修饰金纳米簇方面,已经有了显著的进展,但目前对于合金效应对双金属纳米粒子(NPs)手性光学行为的影响,我们的了解仍然非常有限。此外,在手性相关应用的开发方面,成功的案例也很少。在此,我们以手性合金纳米粒子的合成为正面案例,通过在 d/l-青霉胺(d/l-Pen)存在下,用 NaBH4 还原不同摩尔分数的 HAuCl 和 AgNO3,成功制备了稳定且具有大手性光学性质的超细 Au-Ag 合金 NPs。与具有相似尺寸的单金属 Au 和 Ag 相比,Ag 摩尔分数为 70%的 Au-Ag 合金 NPs 表现出最大的光学活性,其 g 因子最大值约为 1.6×10。引人注目的是,Pen 介导的手性 Au-Ag 合金 NPs 的合成具有比色自识别功能,可用作 d-和 l-Pen 对映体的灵敏圆二色性(CD)探针。手性 Au-Ag 合金 NPs 的等离子体 CD 信号放大(ΔI)与 Pen 的量之间呈现良好的线性关系,在 5.0-80.0 μM 范围内,对 l-Pen 的检测限(3σ)为 1.7 μM,对 d-Pen 的检测限为 1.5 μM。此外,该传感体系在手性对映体存在的情况下对 d-和 l-Pen 具有良好的选择性;因此,我们期望这里所描述的方法将为设计更多与生物过程相关的重要物种的新型对映选择性分析方法开辟新的机会。