Laboratory of Nanomaterials, National Center for Nanoscience and Technology, Beijing, People's Republic of China.
ACS Nano. 2012 Mar 27;6(3):2326-32. doi: 10.1021/nn2044802. Epub 2012 Feb 22.
The manipulation of the chirality and corresponding optical activity in the visible-near-infrared (NIR) light region is significant to realize applications in the fields of chemical sensing, enantioselective separation, chiral nanocatalysis, and optical devices. We studied the plasmon-induced circular dichroism (CD) response by one-dimensional (1D) assembly of cysteine (CYS) and gold nanorods (GNRs). Typically, GNRs can form end-to-end assembly through the electrostatic attraction of CYS molecules preferentially attached on the ends of different GNRs. CD responses are observed at both the UV and visible-NIR light region in the 1D assembly, which are assigned to the CYS molecules and the GNRs, respectively. In addition, the wavelength of the CD responses can be manipulated from 550 nm to more than 900 nm through altering the aspect ratios of GNRs in 1D assembly. Anisotropic enhancement of optical activity is discovered, suggesting that the enhancement of the longitudinal localized surface plasmon resonance (LSPR) peak of GNRs in the CD response is much more apparent than that of the transverse LSPR. The CD responses of individual CYS-attached GNRs and CYS-assembled gold nanoparticles (GNPs) substantiate that the form of assembly and the shape of building blocks are significant not only for the intensity but for the line shape of the CD signals.
手性和相应的圆二色性在可见光-近红外(NIR)光区的操纵对于实现化学传感、对映选择性分离、手性纳米催化和光学器件等领域的应用具有重要意义。我们研究了通过半胱氨酸(CYS)和金纳米棒(GNR)一维组装实现的等离子体诱导圆二色性(CD)响应。通常,GNR 可以通过优先附着在不同 GNR 末端的 CYS 分子的静电吸引形成端到端组装。在一维组装中,在 UV 和可见近红外光区都观察到 CD 响应,分别归因于 CYS 分子和 GNR。此外,通过改变一维组装中 GNR 的纵横比,可以将 CD 响应的波长从 550nm 操纵到 900nm 以上。发现了各向异性的光学活性增强,表明 CD 响应中 GNR 的纵向局域表面等离子体共振(LSPR)峰的增强比横向 LSPR 明显得多。单个 CYS 附着 GNR 和 CYS 组装的金纳米粒子(GNPs)的 CD 响应证实,组装形式和构建块的形状不仅对 CD 信号的强度而且对其线性形状都很重要。