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1.广西科技大学 生物与化学工程学院,广西糖资源绿色加工重点实验室,广西 柳州 545006
2.蔗糖产业省部共建协同创新中心,广西 南宁 530004
[ "崔葆(1996-),女,安徽马鞍山人,硕士研究生,2018年于安徽科技学院获得学士学位,主要从事纳米材料的研究。E-mail: 1214391639@qq.com" ]
[ "黄文艺(1975-),男,广西南宁人,博士,高级实验师,2009年于南京大学获得博士学位,主要从事纳米材料方面的研究。E-mail: hwylz18@163.com" ]
收稿日期:2021-12-25,
修回日期:2022-01-10,
纸质出版日期:2022-04-01
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崔葆, 黄秋梅, 戎西林, 等. 开关式氧化锌量子点荧光探针制备及其特异性检测Cu2+应用[J]. 发光学报, 2022,43(4):620-632.
Bao CUI, Qiu-mei HUANG, Xi-lin RONG, et al. Preparation of Switchable ZnO-NH2 QDs Fluorescent Probe and Its Application in Specific Detection of Cu2+[J]. Chinese journal of luminescence, 2022, 43(4): 620-632.
崔葆, 黄秋梅, 戎西林, 等. 开关式氧化锌量子点荧光探针制备及其特异性检测Cu2+应用[J]. 发光学报, 2022,43(4):620-632. DOI: 10.37188/CJL.20210408.
Bao CUI, Qiu-mei HUANG, Xi-lin RONG, et al. Preparation of Switchable ZnO-NH2 QDs Fluorescent Probe and Its Application in Specific Detection of Cu2+[J]. Chinese journal of luminescence, 2022, 43(4): 620-632. DOI: 10.37188/CJL.20210408.
采用溶胶凝胶法制备出一种荧光性能稳定的氧化锌量子点(ZnO-NH
2
QDs),并对其进行紫外-可见光谱(UV-Vis)、傅里叶变换红外光谱(FTIR)、X 射线衍射(XRD)、透射电子显微镜(TEM)、X 射线光电子能谱(XPS)、荧光(PL)表征。基于Cu
2+
对ZnO-NH
2
QDs动态荧光猝灭且Cu
2+
可与邻苯二胺(OPD,为非荧光物质)反应生成具有黄色荧光的2
3-二氨基吩嗪(DAP)的机理,开发了一种具有特异性识别Cu
2+
的ZnO-NH
2
QDs荧光探针以及ZnO-NH
2
QDs+Cu
2+
+OPD荧光传感系统。该探针在40~9 000 nmol/L的线性范围内检测Cu
2+
,检测限(LOD)为3.93 nmol/L。在自来水中的加标回收率范围为98%~100.58%,在柳江水中Cu
2+
的加标回收率范围为97.43%~101.47%。实验结果表明该探针对Cu
2+
有较好的选择性和准确度,能为金属离子Cu
2+
的荧光快速检测提供一种新思路。
In this paper
a kind of fluorescence stable ZnO-NH
2
QDs was prepared by sol-gel method. ZnO-NH
2
QDs were characterized by UV-visible spectroscopy(UV-Vis)
Fourier transform infrared spectroscopy(FTIR)
X-ray diffraction(XRD)
transmission electron microscopy(TEM)
X-ray photoelectron spectroscopy(XPS)
and fluorescence(PL). Based on the dynamic fluorescence quenched of ZnO-NH
2
QDs by Cu
2+
and the mechanism that Cu
2+
can react with o-phenylenediamine(OPD
a non-fluorescent substance) to form 2
3-diaminophenothiazine (DAP) with yellow fluorescence
a fluorescent probe for ZnO-NH
2
QDs with specific recognition of Cu
2+
and a ZnO-NH
2
QDs+Cu
2+
+OPD fluorescence sensing system were developed. The probe detected Cu
2+
over a linear range of 40-9 000 nmol/L with detection limit of 3.93 nmol/L. The recovery rate of standard addition ranged from 98% to 100.58% in tap water
and that was 97.43% to 101.47% in Liujiang water. The experimental results show that the probe has good selectivity and accuracy for Cu
2+
which can provide a new idea for the fluorescence rapid detection of Cu
2+
metal ions.
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