Resource Quality Assessment Division, CSIR-Central Institute of Mining and Fuel Research, Dhanbad 826015, India.
Analytical Division and Centralized Instrument Facility, CSIR-Central Salt & Marine Chemicals Research Institute, Bhavnagar 364002, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2018 Jan 15;189:556-562. doi: 10.1016/j.saa.2017.08.052. Epub 2017 Aug 18.
Colorimetric and fluorimetric detection of toxic metal ions such as Hg and Cr has gained tremendous popularity over the conventional methods due to their operational simplicity, high selectivity, and speediness. Although numerous colorimetric and fluorescent receptors for Hg or Cr were reported in the literature, boronic acid-based receptors for these metal ions are rather scarce in the literature. Hence, in the present study dual function boronic acid conjugated rhodamine derivatives were developed, and their toxic metal ion detection abilities were studied by absorption, emission and visual detection methods. Absorption and emission spectral studies revealed that these derivatives displayed selectivity towards Hg, Cr and Fe among the other metal ions studied by forming new absorption band. Both the derivatives exhibited colorimetric response towards Hg and Cr by the change in color of the solution to pink and reddish pink with Fe. The detailed mechanism involved in the detection of Hg was deduced by H NMR and ESI-MS studies. Further, these derivatives were used for fluorescence imaging of Hg and Cr in S. aureus bacterial cells. Thus the present manuscript demonstrated the use of boronic acid conjugated rhodamine derivatives as a dual function (colorimetric and fluorescent) probes and as imaging agents for Hg and Cr, which are known for their toxic influence on bacterial cells.
由于操作简单、选择性高、速度快,比色法和荧光法检测有毒金属离子(如 Hg 和 Cr)比传统方法更受欢迎。尽管文献中报道了许多用于 Hg 或 Cr 的比色和荧光受体,但用于这些金属离子的硼酸基受体在文献中相当稀缺。因此,在本研究中开发了双功能硼酸共轭罗丹明衍生物,并通过吸收、发射和目视检测方法研究了它们对有毒金属离子的检测能力。吸收和发射光谱研究表明,这些衍生物通过形成新的吸收带,对其他研究的金属离子显示出对 Hg、Cr 和 Fe 的选择性。两种衍生物都通过溶液颜色变为粉红色和红粉色来对 Hg 和 Cr 表现出色度响应,而 Fe 则不变色。通过 1H NMR 和 ESI-MS 研究推导出了检测 Hg 涉及的详细机制。此外,这些衍生物还用于金黄色葡萄球菌细菌细胞中 Hg 和 Cr 的荧光成像。因此,本论文证明了硼酸共轭罗丹明衍生物可用作双重功能(比色和荧光)探针和 Hg 和 Cr 的成像剂,因为它们对细菌细胞有毒性影响。