Department of Organic Synthesis, University of Chemical Technology and Metallurgy, 8 Kliment Ohridsky Bulv., 1756, Sofia, Bulgaria.
Department of Chemistry, Faculty of Science, Assiut University, Assiut, Egypt.
J Fluoresc. 2019 Nov;29(6):1431-1443. doi: 10.1007/s10895-019-02464-3. Epub 2019 Nov 23.
We reported here the unique ability of a Rhodamine 6G-based probe (3) to detect discriminately several targets, including H, HO, Cu, Hg, Fe, Co, Cd, Zn, Sn, Ni, Al, Pb, Ceand Ag, by unambiguously colorimetric and fluorimetric outcomes. In aqueous solutions, the presence of proton induced the ring-opening of rhodamine moiety but the presence of hydroxide induced the conversion of 2-hydroxyphenyl hydrazone moiety from the non-fluorescent benzenoid form into the fluorescent quinoid form. The probe could to distinguish between different cations in DMF and to work like an artificial tongue at molecular level. Several logic gates including OR, INHIBIT and TRANSFER, were performed by the probe. Moreover, the probe is able to execute three INHIBIT logic gates by two inputs, which was exploited to execute a digital molecular comparator.
我们在这里报道了一种基于罗丹明 6G 的探针(3)的独特能力,它能够通过明确的比色和荧光结果,选择性地检测包括 H、HO、Cu、Hg、Fe、Co、Cd、Zn、Sn、Ni、Al、Pb、Ce 和 Ag 在内的多个目标。在水溶液中,质子的存在诱导了罗丹明部分的开环,但氢氧根的存在诱导了 2-羟基苯腙部分从非荧光的苯并形式转化为荧光的醌式形式。探针可以在 DMF 中区分不同的阳离子,并在分子水平上充当人工舌头。该探针可以执行包括 OR、INHIBIT 和 TRANSFER 在内的多个逻辑门。此外,探针还能够通过两个输入执行三个 INHIBIT 逻辑门,这被利用来执行数字分子比较器。