Chem. J. Chinese Universities ›› 2024, Vol. 45 ›› Issue (12): 20240322.doi: 10.7503/cjcu20240322
• Analytical Chemistry • Previous Articles Next Articles
LI Jiahui, ZHANG Jian, YAN Long, FENG Yun, ZHANG Jiali, LIU Yongxin, YANG Shaoming()
Received:
2024-06-28
Online:
2024-12-10
Published:
2024-08-07
Contact:
YANG Shaoming
E-mail:yangsm79@163.com
Supported by:
CLC Number:
TrendMD:
LI Jiahui, ZHANG Jian, YAN Long, FENG Yun, ZHANG Jiali, LIU Yongxin, YANG Shaoming. Preparation and Detection Performance of Norfloxacin Imprinted Electrochemical Sensor[J]. Chem. J. Chinese Universities, 2024, 45(12): 20240322.
Method | Material | Detection limit/(mol‧L-1) | Detection range/(mol‧L-1) | References |
---|---|---|---|---|
FD a | CdTe quantum dots | 1.8×10‒7 | — | [ |
SERS b | Fe3O4/GO/Ag⁃MIPs d | 1.0×10‒8 | 1.0×10‒3—1.0×10‒8 | [ |
HPLC⁃DAD c | Silica polymers | 6.26×10‒9 | 3.13×10‒6—3.13×10‒8 | [ |
PEC method | MIP/CuNC/GCE e | 3.3×10‒9 | 1×10‒8—5×10‒7 | [ |
PEC method | GCE/ACET/Zr⁃Fe | 3.2×10‒9 | 1.0×10‒5—1.0×10‒7 | This study |
MOF/MIP |
Table 1 Comparison of different methods for NOR detection
Method | Material | Detection limit/(mol‧L-1) | Detection range/(mol‧L-1) | References |
---|---|---|---|---|
FD a | CdTe quantum dots | 1.8×10‒7 | — | [ |
SERS b | Fe3O4/GO/Ag⁃MIPs d | 1.0×10‒8 | 1.0×10‒3—1.0×10‒8 | [ |
HPLC⁃DAD c | Silica polymers | 6.26×10‒9 | 3.13×10‒6—3.13×10‒8 | [ |
PEC method | MIP/CuNC/GCE e | 3.3×10‒9 | 1×10‒8—5×10‒7 | [ |
PEC method | GCE/ACET/Zr⁃Fe | 3.2×10‒9 | 1.0×10‒5—1.0×10‒7 | This study |
MOF/MIP |
Sample | coriginal/(mmol‧L-1) | cadd/(mmol‧L-1) | cfound/(mmol‧L-1) | Recovery(%) |
---|---|---|---|---|
Norfloxacin capsule | 2.34×10‒3 | 1.0×10‒3 | 3.36×10‒3 | 102.3 |
5.0×10‒3 | 7.44×10‒3 | 101.9 | ||
1.0×10‒2 | 1.19×10‒2 | 96.6 |
Table 2 Recovery of norfloxacin
Sample | coriginal/(mmol‧L-1) | cadd/(mmol‧L-1) | cfound/(mmol‧L-1) | Recovery(%) |
---|---|---|---|---|
Norfloxacin capsule | 2.34×10‒3 | 1.0×10‒3 | 3.36×10‒3 | 102.3 |
5.0×10‒3 | 7.44×10‒3 | 101.9 | ||
1.0×10‒2 | 1.19×10‒2 | 96.6 |
1 | Zhang M. Z., Lin Z., Li Z. L., J. Zhejiang Univ.(Science Edition), 2024, 51(3), 370—380 |
张明志, 林智, 厉子龙. 浙江大学学报(理学版), 2024, 51(3), 370—380 | |
2 | Cai T. G., Zhang L., Zhang J. D., Chinese J. Appl. Ecology, 2022, 33(5), 1435—1440 |
蔡天贵, 张龙, 张晋东. 应用生态学报, 2022, 33(5), 1435—1440 | |
3 | Shi T., Fu H., Tan L., Wang J., Microchim. Acta, 2019, 186, 1—8 |
4 | Li X. X., Li L. J., He Y. H., J. Anal. Sci., 2020, 36(4), 477—483 |
李笑轩, 李利军, 何雨涵. 分析科学学报, 2020, 36(4), 477—483 | |
5 | Qin D., Zhao M., Wang J. T., Lian Z. R., Marine Pollution Bulletin, 2020, 150, 110677 |
6 | Zhao S. Z., Yu X. J., Qian Y. N., Chen W., Shen J. L., Theranostics, 2020, 10(14), 6278—6309 |
7 | Lin T. R., Zhong L. S., Wang J., Guo L. Q., Wu H. Y., Guo Q. Q., Fu F. F., Chen G. N., Biosen. Bioelectron., 2014, 59, 89—93 |
8 | Xie X. Y., Zhao Y. X., Zhao L. Z., Li R. S., Wu D. H., Ye H., Xin Q. P., Li H., Zhang Y. Z., Chem. J. Chinese Universities, 2020, 41(8), 1776—1784 |
谢兴钰, 赵雅香, 赵莉芝, 李日舜, 吴迪昊, 叶卉, 辛清萍, 李泓, 张玉忠. 高等学校化学学报, 2020, 41(8), 1776—1784 | |
9 | Ma L., Jiang F. B., Fan X., Wang L. Y., He C., Adv. Mater., 2020, 32(49), 2003065 |
10 | Chen S. Y., Xu X. L., Gao H. Y., Wang J. J., Li A., J. Phys. Chem. C, 2021, 125(17), 9200—9209 |
11 | Janjani P., Bhardwaj U., Gupta R., Kushwaha H. S., Anal. Chim. Acta, 2022, 1202, 339676 |
12 | Wang A. M., Luo M., Lv B., Indust. Engineer. Chem. Res., 2022, 61(11), 3941—3951 |
13 | Dhakshinamoorthy A., Asiri A. M., Garcia H., Catalysis Science and Technology, 2016, 6(14), 5238—5261 |
14 | Yang G. W., Li J. P., Chinese J. Anal. Chem., 2023, 51(7), 1112—1121 |
杨光炜, 李建平. 分析化学, 2023, 51(7), 1112—1121 | |
15 | Kazemi E., Dadfarnia S., Shabani A. M. H., Food Chemistry, 2017, 237, 921—928 |
16 | Huang G. Z., Wang Q. X., Chen J. M., Food and Machinery, 2023, 39(1), 24—30 |
黄桂珍, 汪庆祥, 陈金美. 食品与机械, 2023, 39(1), 24—30 | |
17 | Ye C. Z., Construction and Application of Norfloxacin Molecularly Imprinted Sensor Based on CoFe⁃MOFs/AuNPs,Nanchang University, Nanchang, 2022 |
叶璀珠. 基于CoFe⁃MOFs/AuNPs的诺氟沙星分子印迹传感器构建及其应用. 南昌: 南昌大学, 2022 | |
18 | Yang X. B., Hu X. N., Sun X., Chinese J. Inorgan. Chem., 2021, 37(12), 2203—2208 |
杨学兵, 胡晓娜, 孙旭. 无机化学学报, 2021, 37(12), 2203—2208 | |
19 | Liu X. W., Niu Y., Cao R. X., Acta Phys. Chim. Sin., 2022, 38(2), 101—109 |
刘学伟, 牛莹, 曹瑞雄. 物理化学学报, 2022, 38(2), 101—109 | |
20 | Liu S., Huo Y. P., Hu Z. Y., Cao G. F., Gao Z. X., Microchim. Acta, 2024, 191(1), 57 |
21 | Cao M. H., Zhang Q., Li L. C., Battery Bimonthly, 2024, 54(3), 348—353 |
曹米红, 张骞, 李路成. 电池, 2024, 54(3), 348—353 | |
22 | Liu W. L., Cui F., Li H. F., Sensors and Actuators B: Chem., 2020, 323, 128669 |
23 | Ma X. H., Li M., Tong P., Biosens. Bioelectron., 2020, 156, 112150 |
24 | Xiong Y. Q., Construction and Application of Norfloxacin Sensor with Mixed Recognition Sites of Peptide and Molecular Imprinting, Nanchang University, Nanchang, 2024 |
熊源钱. 具有多肽和分子印迹混合识别位点的诺氟沙星电化学传感器的构建及应用. 南昌: 南昌大学, 2024 | |
25 | Ding S. C., Lyu Z. Y., Li S. Q., Biosens. Bioelectron., 2021, 191, 113434 |
26 | Wuhan University, Analytical Chemistry, Higher Education Press, Beijing, 2018, 386—387 |
武汉大学. 分析化学, 北京: 高等教育出版社, 2018, 386—387 | |
27 | Wang L., Liu Y. Y., Yang R., Microchem. J., 2020, 159, 105567 |
28 | Roushani M., Rahmati Z., J. Iranian Chem. Soc., 2019, 16(5), 999—1006 |
29 | Wang Q. T., Cheng S. N., Ren S. F., Microchem. J., 2022, 183, 107963 |
[1] | GONG Wenpeng, ZHOU Linnan. Fluorescent Detection of Hydrogen Sulfide Using Metal-organic Framework CAU-10-NH-DNBA Functionalized with 3,5-Dinitrobenzoic Acid [J]. Chem. J. Chinese Universities, 2024, 45(8): 20240069. |
[2] | ZHENG Delun, ZHANG Ruilong. Construction of an Ultrasensitive AFP Photoelectrochemical Analysis Based on the Efficient Carrier Separation Capability of p-n Heterojunction CuO/TiO2 Complexes [J]. Chem. J. Chinese Universities, 2024, 45(8): 20240183. |
[3] | WEI Chaoxian, LI Nansheng, PANG Yuanhao, ZHANG Yun, JIN Wenying, YUAN Yali. Synthesis of Carbon Nanopolymers Based on Deep Eutectic Strategy for Simultaneous Electrochemical Detection of a Variety of Biological Small Molecules [J]. Chem. J. Chinese Universities, 2024, 45(7): 20240103. |
[4] | HUANG Shengxiu, LIU Liyang, YANG Weiqiang, WANG Qingxiang, NI Jiancong. Detection of Perfluorooctane Sulfonate in Aqueous Environment Based on Molecular Imprinting Coupled Bipolar Electrochemiluminescence Sensor [J]. Chem. J. Chinese Universities, 2024, 45(6): 20240106. |
[5] | CHEN Xiaoping, WANG Xutan, LIU Ning, WANG Qingxiang, NI Jiancong, YANG Weiqiang, LIN Zhenyu. MOFs-based Microfluidic Chips for Real-time Online Determination of Multiple Heavy Metal Ions [J]. Chem. J. Chinese Universities, 2024, 45(2): 20230395. |
[6] | JI Chao, LI Wen, ZHANG Lirong, HUA Jia, LIU Yunling. Construction of a Eu-MOF Material with Fe3+ and Nitro-aromatic Explosives Fluorescence Detection Performance [J]. Chem. J. Chinese Universities, 2024, 45(2): 20230455. |
[7] | TANG Haiyan, ZI Limeng, ZHANG Bing, FU Yu. Preparation and Application of CuBDC-NH2/PmPD Mixed Matrix Membranes for Photothermal Conversion [J]. Chem. J. Chinese Universities, 2024, 45(2): 20230379. |
[8] | LU Chunyu, JING Yuan, WEI Xiaofei, YAO Shiwei, WANG Zhifei, WANG Shubin, DAI Fangna. Advantages and Research Progress of Metal-organic Framework in Supercapacitors [J]. Chem. J. Chinese Universities, 2024, 45(2): 20230450. |
[9] | LI Shixuan, MENG Hua, YIN Xuehu, YI Jinfei, MA Lihong, ZHANG Yanli, WANG Hongbin, YANG Wenrong, PANG Pengfei. A Double-Chamber Enzymatic Biofuel Cells-based Self-powered Glucose Biosensor Based on Graphene/Gold Nanoparticles/Titanium Carbide Nanocomposite [J]. Chem. J. Chinese Universities, 2024, 45(12): 20240301. |
[10] | ZHANG Mengjia, ZOU Nan, LUO Jiamei, ZHONG Xionghui, LI Ling. Catalytic Performance of Zr-MOF Supported Poly Ionic Liquid for CO2 Cycloaddition Reaction [J]. Chem. J. Chinese Universities, 2024, 45(10): 20240113. |
[11] | LI Xin, ZHOU Ying, WANG Dingnan, PEI Yong, WU Bin, ZHANG Yiming. Selective Adsorption and Computational Simulation of MOF/MIPs Based on Boron-affinity Molecular Imprinting Strategy on Salbutamol [J]. Chem. J. Chinese Universities, 2024, 45(1): 20230348. |
[12] | HUANG Rongting, ZHU Guiying, LI Xinyu, TANG Daoyuan, ZHANG Yong, WANG Bin, ZHU Jintuo, HE Xinjian, XU Huan. Morphological Manipulation of Highly Electroactive Poly(lactic acid) Nanofibrous Membranes for Efficient Removal of Airborne PM0.3 [J]. Chem. J. Chinese Universities, 2024, 45(1): 20230353. |
[13] | LIU Jinlu, GUO Jiayu, HUA Jia, LI Guanghua, SHI Zhan, FENG Shouhua. Construction and Adsorption Properties of an Amide-based Cu-MOF [J]. Chem. J. Chinese Universities, 2023, 44(6): 20220746. |
[14] | WANG Gang, LIU Genqi, ZHAO Lingli, WANG Yue, LIU Lisha, SUN Chenxin, MA Xiaoyan. Nonylphenol Molecularly Imprinted 2D Photonic Crystal Hydrogel Sensor [J]. Chem. J. Chinese Universities, 2023, 44(6): 20220757. |
[15] | HAN Xu, BAI Xue, ZHANG Zhong, YANG Yanli, CUI Hong, LIU Shuxia. Synthesis and Deep Desulfurization Activity of Fuel Oil of PW11M@Cu3(BTC)2 Hybrid [J]. Chem. J. Chinese Universities, 2023, 44(4): 20220702. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||