含苯并噻唑骨架熒光探針的合成及離子識別研究
發(fā)布時間:2019-06-18 10:36
【摘要】:苯并噻唑類衍生物是重要的含氮雜環(huán)化合物。其應(yīng)用范圍涉及到生物學(xué),醫(yī)學(xué)等諸多領(lǐng)域,由于具有良好的熒光特性,使得人們不斷地對其進行深入研究。本文以5-甲基-2-羥基-3-(2-苯并噻唑基)苯甲醛為底物設(shè)計合成了一系列的熒光探針,通過研究這些熒光探針的離子識別性能,得到了一些有意義的結(jié)果。具體內(nèi)容如下:1.設(shè)計合成了基于苯并噻唑的烯胺酮型熒光探針BTP并考察了其陰離子識別行為。在DMSO/H_2O(95/5)溶液中,BTP可通過比色和熒光兩種信號通道高選擇性識別CN-。當(dāng)向BTP溶液中加入CN-后,觀察到顏色由橙色變?yōu)辄S綠色,同時發(fā)生熒光增強并伴有藍(lán)移。BTP對CN-的識別過程具有極強的抗干擾能力,檢測限為3.94×10-7M。高分辨質(zhì)譜及核磁共振氫譜的研究結(jié)果表明,CN-的識別經(jīng)歷了其對烯胺酮BTP的親核加成過程。此外,通過簡單的試紙實驗證明了BTP對CN-檢測的實用性。2.設(shè)計合成了含苯并噻唑席夫堿類的探針L,L1,可以對不同的離子具有選擇性的識別。L能夠在乙醇溶液中實現(xiàn)對Zn~(2+)與Mg~(2+)的雙識別,且互不干擾,其結(jié)合比均為1:1。該探針具有選擇性好,響應(yīng)時間快等優(yōu)點。而傳感器L1,能夠在DMF/H_2O(1/1,v/v)的緩沖體系中識別ClO-,且L1為比率型熒光探針,與單一波長發(fā)射的熒光探針相比,更能克服環(huán)境因素的干擾。3.設(shè)計合成了一種新的含苯并噻唑縮氨基硫脲類探針L2,L2能夠在PBS(10 mM,p H=7.4)中高選擇性的對Zn~(2+)進行識別,且不受其他陽離子的干擾。該探針具有較高的靈敏度,可以在十秒內(nèi)完成識別,具有較低的檢測限(1.42×10~(-6) M),這些結(jié)果表明探針L2在鋅離子的檢測方面具有潛在的應(yīng)用價值。試紙實驗表明探針L2能夠很好地對環(huán)境中的鋅離子進行實際檢測。4.設(shè)計合成了一種以2-(2′-羥基苯基)苯并噻唑為底物的酰腙類探針L3,該探針可以在乙醇溶劑中對Al~(3+)進行識別,且具有較高的選擇性。通過探針L3對Al~(3+)的滴定實驗,說明探針L3在5.5倍時達到飽和。另外,結(jié)合比實驗表明,探針L3與Al~(3+)是通過1:1進行結(jié)合的。
[Abstract]:Benzothiazole derivatives are important heterocycle compounds containing nitrogen. Its application scope involves biology, medicine and many other fields, because of its good fluorescence characteristics, people continue to carry out in-depth research on it. In this paper, a series of fluorescence probes were designed and synthesized with 5-methyl-2-hydroxyl-3-(2-benzothiazolyl) benzaldehyde as substrate. Some meaningful results were obtained by studying the ion recognition performance of these fluorescence probes. The specific contents are as follows: 1. An enamine fluorescent probe BTP based on benzothiazole was designed and synthesized and its anion recognition behavior was investigated. In DMSO/H_2O (95 鈮,
本文編號:2501409
[Abstract]:Benzothiazole derivatives are important heterocycle compounds containing nitrogen. Its application scope involves biology, medicine and many other fields, because of its good fluorescence characteristics, people continue to carry out in-depth research on it. In this paper, a series of fluorescence probes were designed and synthesized with 5-methyl-2-hydroxyl-3-(2-benzothiazolyl) benzaldehyde as substrate. Some meaningful results were obtained by studying the ion recognition performance of these fluorescence probes. The specific contents are as follows: 1. An enamine fluorescent probe BTP based on benzothiazole was designed and synthesized and its anion recognition behavior was investigated. In DMSO/H_2O (95 鈮,
本文編號:2501409
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