Wei Ming-Zhang, Deng Tian-Song, Zhang Qi, Cheng Zhiqun, Li Shiqi
School of Electronics and Information Engineering, Hangzhou Dianzi University, No. 1158, 2nd Avenue, Baiyang Street, Hangzhou 310018, China.
ACS Omega. 2021 Mar 24;6(13):9188-9195. doi: 10.1021/acsomega.1c00510. eCollection 2021 Apr 6.
Although gold nanorods capped with hexadecyltrimethylammonium bromide (CTAB) have been prepared through the seed-mediated method for their use in diagnostics and therapeutics, the toxicity of AuNRs@CTAB limits their practical applications in the biomedical field. In this work, the synthesis and tuning of gold nanorods at very low concentrations of CTAB (as low as 0.008 M) was successfully achieved by using the seed-mediated method. Furthermore, we managed to optimize the growth conditions by changing the amount of seeds, AgNO, and/or HCl. At low CTAB concentrations, gold nanorods with tunable size and aspect ratio, high monodispersity, and high purity were obtained and studied by UV-vis spectroscopy, transmission electron microscopy, and Mie-Gans theoretical calculations. This work revealed a method of nanoparticle growth that may be extended to synthesize other nanomaterials such as Ag, Cu, Pd, and Pt at such low CTAB concentrations.
尽管通过种子介导法制备了用十六烷基三甲基溴化铵(CTAB)包覆的金纳米棒以用于诊断和治疗,但AuNRs@CTAB的毒性限制了它们在生物医学领域的实际应用。在这项工作中,通过种子介导法成功实现了在极低CTAB浓度(低至0.008 M)下金纳米棒的合成与调控。此外,我们通过改变种子、AgNO₃和/或HCl的用量成功优化了生长条件。在低CTAB浓度下,获得了尺寸和纵横比可调、单分散性高且纯度高的金纳米棒,并通过紫外-可见光谱、透射电子显微镜和米氏-甘斯理论计算对其进行了研究。这项工作揭示了一种纳米颗粒生长方法,该方法可能扩展到在如此低的CTAB浓度下合成其他纳米材料,如Ag、Cu、Pd和Pt。