Department of Chemical Engineering, National Cheng Kung University, Tainan 70101, Taiwan, Republic of China.
Analyst. 2013 Mar 7;138(5):1564-9. doi: 10.1039/c3an36758d.
A bis-propargyl-appended rhodamine B-based receptor BPRB has been synthesised that exhibits pronounced fluorescence enhancement in the presence of Pd2+ ions. The addition of Pd2+ enhanced the fluorescence intensity of BPRB by 113-fold (Φf = 0.37) and BPRB was found to exhibit high selectivity towards Pd2+ compared to a range of other metal ions. The enhancement of fluorescence was triggered by spirolactam ring opening followed by depropargylation of BPRB in the presence of Pd2+, as evidenced by FTIR and NMR analyses. BPRB was able to detect Pd0 without the addition of a reducing agent, and the emission intensity of BPRB–Pd0 was almost identical to that of BPRB–Pd2+; however, a rapid fluorescence response was observed in the presence of PPh3. To explore the efficiency of the rhodamine unit, a bispropargyl derivative of cyclohexane (BPCH) was synthesised and the fluorescence response towards Pd2+ was examined and compared with BPRB, revealing that the rhodamine unit enhanced the fluorescence intensity by 500-fold. The fluorescence images of BPRB and BPRB–Pd2+ samples indicate that BPRB could be useful for imaging Pd2+ in living cells.
一种双炔丙基取代的罗丹明 B 基受体 BPRB 被合成出来,该受体在 Pd2+ 离子存在下表现出显著的荧光增强。Pd2+ 的加入使 BPRB 的荧光强度增强了 113 倍(Φf = 0.37),并且与一系列其他金属离子相比,BPRB 对 Pd2+ 表现出高选择性。荧光增强是由 Pd2+ 存在下螺环内酰胺开环和 BPRB 的去炔丙基化引发的,这一点可以通过 FTIR 和 NMR 分析得到证实。BPRB 能够在没有添加还原剂的情况下检测到 Pd0,并且 BPRB-Pd0 的发射强度几乎与 BPRB-Pd2+的发射强度相同;然而,在存在 PPh3 的情况下观察到快速的荧光响应。为了探索罗丹明单元的效率,合成了环己烷的双炔丙基衍生物(BPCH),并对其对 Pd2+ 的荧光响应进行了研究,并与 BPRB 进行了比较,结果表明罗丹明单元使荧光强度增强了 500 倍。BPRB 和 BPRB-Pd2+ 样品的荧光图像表明,BPRB 可用于在活细胞中成像 Pd2+。