搜索热:失效分析 陶瓷
扫一扫 加微信
首页 > 期刊论文 > 论文摘要
双酚A电化学检测方法的研究进展
          
Research Progress of Electrochemical Methods on Detection of Bisphenol A

摘    要
综述了双酚A的直接电化学检测方法(用于裸电极表面的修饰材料包括纳米材料、新型材料和生物材料)和间接电化学检测方法(包括电化学适配体传感器,电化学酶传感器和电化学分子印迹传感器)的研究进展,并对其前景进行了简要展望(引用文献54篇)。
标    签 电化学   双酚A   综述   electrochemistry   bisphenol A   review  
 
Abstract
A review on research progress of direct electrochemical methods (the modifying materials for bare electrode surface including nanomaterials, novel materials and biomaterials) and indirect electrochemical methods (including electrochemical aptamer sensors, electrochemical enzyme sensors and electrochemical molecular imprinted polymer sensors) on detection of bisphenol A was presented. A brief prospect was also given (54 ref. cited).

中图分类号 O657.1   DOI 10.11973/lhjy-hx202102017

 
  中国光学期刊网论文下载说明


所属栏目 综述

基金项目 辽宁省教育厅科研项目(2019LNZD02);辽宁省教育科学“十三五”规划课题(JG178DB165)

收稿日期 2020/3/25

修改稿日期

网络出版日期

作者单位点击查看


备注王亚,硕士研究生,主要从事电化学生物传感器研究工作

引用该论文: WANG Ya,GU Tingting. Research Progress of Electrochemical Methods on Detection of Bisphenol A[J]. Physical Testing and Chemical Analysis part B:Chemical Analysis, 2021, 57(2): 187~192
王亚,顾婷婷. 双酚A电化学检测方法的研究进展[J]. 理化检验-化学分册, 2021, 57(2): 187~192


论文评价
共有人对该论文发表了看法,其中:
人认为该论文很差
人认为该论文较差
人认为该论文一般
人认为该论文较好
人认为该论文很好
分享论文
分享到新浪微博 分享到腾讯微博 分享到人人网 分享到 Google Reader 分享到百度搜藏分享到Twitter

参考文献
【1】BEN-JONATHAN N. Endocrine disrupting chemicals and breast cancer: The saga of bisphenol A[M]. Cham: Springer International Publishing, 2018.
 
【2】SUN F X, KANG L C, XIANG X L, et al. Recent advances and progress in the detection of bisphenol A[J]. Analytical and Bioanalytical Chemistry, 2016,408(25):6913-6927.
 
【3】BALLESTEROS-GÓMEZ A, RUBIO S, PÉREZ-BENDITO D. Analytical methods for the determination of bisphenol A in food[J]. Journal of Chromatography A, 2009,1216(3):449-469.
 
【4】WANG M X, SHI Y F, ZHANG Y B, et al. Sensitive electrochemical detection of bisphenol A using molybdenum disulfide/Au nanorod composites modified glassy carbon electrode[J]. Electroanalysis, 2017,29(11):2620-2627.
 
【5】MOGHADAMNIA A, KAZEMI S, FEIZI F, et al. Histopathology and histomorphometric investigation of bisphenol A and nonylphenol on the male rat reproductive system[J]. North American Journal of Medical Sciences, 2016,8(5): 215-221.
 
【6】ZHANG Y H, WEI F, ZHANG J, et al. Bisphenol A and estrogen induce proliferation of human thyroid tumor cells via an estrogen-receptor-dependent pathway[J]. Archives of Biochemistry and Biophysics, 2017,633:29-39.
 
【7】张洵.以血红蛋白、红细胞等为靶研究三种双酚A类似物毒性效应与机理[D].济南:山东大学, 2019.
 
【8】王蔚,王子豪,张晓娜.双酚A及其类似物对哺乳动物和鱼类神经毒性效应及机制研究进展[J].中国海洋大学学报, 2019,49(5):27-34.
 
【9】NAM S H, SEO Y M, KIM M G. Bisphenol A migration from polycarbonate baby bottle with repeated use[J]. Chemosphere, 2010,79:949-952.
 
【10】RAGAVAN K V, RASTOGI N K, THAKUR M S. Sensors and biosensors for analysis of bisphenol-A[J]. TrAC Trends in Analytical Chemistry, 2013,52:248-260.
 
【11】PANG Q H, LI Y R, MENG L X, et al. Neurotoxicity of BPA, BPS, and BPB for the hippocampal cell line (HT-22): An implication for the replacement of BPA in plastics[J]. Chemosphere, 2019,226:545-552.
 
【12】MOHD M A, GURMEET K, ROSNAH I, et al. Detrimental effects of bisphenol A on development and functions of the male reproductive system in experimental rats[J]. EXCLI Journal, 2014,13:151-160.
 
【13】CASERTA D, DI SEGNI N, MALLOZZI M, et al. Bisphenol A and the female reproductive tract: An overview of recent laboratory evidence and epidemiological studies[J]. Reproductive Biology and Endocrinology, 2014,12(1):37-47.
 
【14】庄晶,梁勇,彭圣明.高效液相色谱法检测卷烟辅料中双酚A的含量[J].湘潭大学自然科学学报, 2016,38(2):56-61.
 
【15】LI D P, MA X G, WANG R, et al. Determination of trace bisphenol A in environmental water by high-performance liquid chromatography using magnetic reduced graphene oxide based solid-phase extraction coupled with dispersive liquid-liquid microextraction[J]. Analytical and Bioanalytical Chemistry, 2017,409(5):1165-1172.
 
【16】韩明均,覃荣周,程敏,等.高效液相色谱法检测运动饮料中双酚A的残留[J].食品研究与开发, 2017,38(8):149-152.
 
【17】WU P G, ZHANG L Q, YANG D J, et al. Isotope dilution gas chromatography with mass spectrometry for the analysis of 4-octyl phenol, 4-nonylphenol,and bisphenol A in vegetable oils[J]. Journal of Separation Science, 2016,39(5):904-909.
 
【18】ZHANG L, ZHOU L H, JI W J, et al. Cysteamine-assisted highly sensitive detection of bisphenol A in water samples by surface-enhanced Raman spectroscopy with Ag nanoparticle-modified filter paper as substrate[J]. Food Analytical Methods, 2017,10(6):1940-1947.
 
【19】张丽莎,瞿思宜,倪健,等.双酚A检测技术研究进展[J].杭州师范大学学报(自然科学版), 2013,12(5):456-461.
 
【20】ALNAIMAT A S, BARCIELA-ALONSO M C, BERMEJO-BARRERA P. Determination of bisphenol A in tea samples by solid phase extraction and liquid chromatography coupled to mass spectrometry[J]. Microchemical Journal, 2019,147:598-604.
 
【21】柏雨帆.食品包装材料中双酚A检测方法探析[J].现代食品, 2018(11):44-46.
 
【22】LIU Y J, LIU Y, LIU B H. A dual-signaling strategy for ultrasensitive detection of bisphenol A by aptamer-based electrochemical biosensor[J]. Journal of Electroanalytical Chemistry, 2016,781:265-271.
 
【23】ZHANG J, XU X J, CHEN Z D. A highly sensitive electrochemical sensor for bisphenol A using cetyltrimethylammonium bromide functionalized carbon nanohorn modified electrode[J]. Ionics, 2018,24(7):2123-2134.
 
【24】ZOU J F, LIU Z G, GUO Y J, et al. Electrochemical sensor for the facile detection of trace amounts of bisphenol A based on cyclodextrin-functionalized graphene/platinum nanoparticles[J]. Analytical Methods, 2017,9(1):134-140.
 
【25】SHEN R Y, ZHANG W M, YUAN Y, et al. Electrochemical detection of bisphenol A at graphene/melamine nanoparticle-modified glassy carbon electrode[J]. Journal of Applied Electrochemistry, 2015,45(4):343-352.
 
【26】LU X C, SONG L, DING T T, et al. CuS-MWCNT based electrochemical sensor for sensitive detection of bisphenol A[J]. Russian Journal of Electrochemistry, 2017,53(4):366-373.
 
【27】JEMMELI D, MARCOCCIO E, MOSCONE D, et al. Highly sensitive paper-based electrochemical sensor for reagent free detection of bisphenol A[J]. Talanta, 2020,216:120924-120948.
 
【28】GOULART L A, DE MORAES F C, MASCARO L H. Influence of the different carbon nanotubes on the development of electrochemical sensors for bisphenol A[J]. Materials Science and Engineering: C, 2016,58:768-773.
 
【29】DONG X W, QI X L, LIU N, et al. Direct electrochemical detection of bisphenol A using a highly conductive graphite nanoparticle film electrode[J]. Sensors, 2017,17(4):836-846.
 
【30】金君,于浩,高小玲,等.双酚A在纳米氧化铜粒子修饰玻碳电极上的电化学行为及应用[J].分析试验室, 2016,35(4):472-475.
 
【31】彭莹,季露露,汪娇,等.双酚A在石墨烯修饰电极上的电化学行为[J].安徽工业大学学报(自然科学版), 2017,34(4):356-359.
 
【32】冯志玲,刘青,冯施施,等.单壁碳纳米管修饰电极测定聚碳酸酯塑料中的双酚A[J].分析化学进展, 2015,5(4):49-56.
 
【33】YANG L, ZHAO H, FAN S M, et al. A highly sensitive electrochemical sensor for simultaneous determination of hydroquinone and bisphenol A based on the ultrafine Pd nanoparticle@TiO2 functionalized SiC[J]. Analytica Chimica Acta, 2014,852:28-36.
 
【34】于浩,冯晓,陈小霞,等.还原氧化石墨烯-多壁碳纳米管复合膜负载金纳米粒子修饰玻碳电极检测双酚A[J].分析化学, 2017,45(5):713-720.
 
【35】HUANG X Z, HUANG D H, CHEN J Y, et al. Fabrication of novel electrochemical sensor based on bimetallic Ce-Ni-MOF for sensitive detection of bisphenol A[J]. Analytical and Bioanalytical Chemistry, 2020,412(4):849-860.
 
【36】LIU L H, WANG C F, ZHUO K L. Cetyltrimethylammonium bromide (CTAB)-ionic liquid composite modified electrode for sensitive cyclic voltammetric determination of bisphenol A[J]. Chemical Research in Chinese Universities, 2016,32(6):992-995.
 
【37】ZHAO J, MA Y H, HOU X D, et al. A novel ionic liquid synthesis, electrochemical polymerization, and sensing performance toward bisphenol A[J]. Journal of Solid State Electrochemistry, 2015,19(6):1571-1578.
 
【38】柴凤兰,赵开楼,张帆.金属酞菁类化合物的应用研究进展[J].当代化工, 2017,46(1):165-172.
 
【39】KOYUN O, GORDUK S, GENCTEN M, et al. A novel copper(Ⅱ) phthalocyanine-modified multiwalled carbon nanotube-based electrode for sensitive electrochemical detection of bisphenol A[J]. New Journal of Chemistry, 2019,43(1):85-92.
 
【40】蒋晓华,丁文捷,栾崇林.基于DNA-单壁纳米碳管复合修饰电极的双酚A电化学传感器[J].分析试验室, 2013,32(8):58-62.
 
【41】INROGA F A D, ROCHA M O, LAVAYEN V, et al. Development of a tyrosinase-based biosensor for bisphenol A detection using gold leaf-like microstructures[J]. Journal of Solid State Electrochemistry, 2019,23(6):1659-1666.
 
【42】LIU X, LI W, XU X H, et al. Electrochemical aptamer sensor for small molecule assays[M]. Totowa: Humana Press, 2011.
 
【43】孟凡飞,孟凡娜,熊琦,等.电化学适配体传感器的研究进展[J].检验医学与临床, 2018,15(21):3303-3307.
 
【44】YU Z H, LUAN Y N, LI H Y, et al. A disposable electrochemical aptasensor using single-stranded DNA-methylene blue complex as signal-amplification platform for sensitive sensing of bisphenol A[J]. Sensors and Actuators B: Chemical, 2019,284:73-80.
 
【45】NAZARI M, KASHANIAN S, RAFIPOUR R, et al. Biosensor design using an electroactive label-based aptamer to detect bisphenol A in serum samples[J]. Journal of Biosciences, 2019,44(4): 1-10.
 
【46】LIU Y, YAO L, HE L Z, et al. Electrochemical enzyme biosensor bearing biochar nanoparticle as signal enhancer for bisphenol A detection in water[J]. Sensors, 2019,19(7): 1619-1632.
 
【47】SIDWABA U, NTSHONGONTSHI N, FELENI U, et al. Manganese peroxidase-based electro-oxidation of bisphenol A at hydrogellic polyaniline-titania nanocomposite-modified glassy carbon electrode[J]. Electrocatalysis, 2019,10(4):323-331.
 
【48】陈志强,李建平,张学洪,等.分子印迹电化学传感器敏感膜体系的构建及其研究进展[J].分析测试学报, 2010,29(1):97-104.
 
【49】李春涯,王长发,王成行,等.分子印迹电化学传感器的研究进展[J].分析科学学报, 2006,22(5):605-610.
 
【50】李平忠,徐祥云.分子印迹技术及其应用[J].中国市场, 2012(49):53-54.
 
【51】郑巧利,王恩强.探讨分子印迹电化学传感器对双酚A的检测[J].山西建筑, 2014,40(30):198-199.
 
【52】李玲玲,杨绍明,丁绍卿,等.基于纳米金增敏的双酚A二氧化钛凝胶分子印迹电化学传感器的制备及应用[J].应用化学, 2018,35(4):484-490.
 
【53】HUANG J D, ZHANG X M, LIU S, et al. Electrochemical sensor for bisphenol A detection based on molecularly imprinted polymers and gold nanoparticles[J]. Journal of Applied Electrochemistry, 2011,41(11):1323-1328.
 
相关信息
   标题 相关频次
 超快伏安法研究进展
 4
 纳米材料在电化学生物传感器中的应用及纳米仿生界面的构建
 4
 持久性有机污染物电化学分析的研究进展
 3
 环境中肼类燃料的分析方法研究进展
 3
 壳聚糖复合材料在生物传感器中的应用
 3
 2205双相不锈钢在硫酸中的腐蚀性能
 2
 2205双相钢临界点蚀温度测量方法的比较
 2
 2-吡啶甲醛缩4-苯基氨基硫脲席夫碱在盐酸溶液中对Q235钢的缓蚀作用
 2
 316L不锈钢CO2输送管线的垢下腐蚀行为
 2
 65Mn、35Cr2Ni3MoV和AF1410在模拟海洋环境中的耐蚀性
 2
 A508III低合金钢在不同浓度硼酸溶液中的腐蚀与电化学行为
 2
 Al-Zr-Nd合金在3.5%NaCl溶液中的腐蚀行为
 2
 CdSe/石墨烯/TiO2纳米管复合膜的制备及其对金属的保护性能
 2
 CdSe-TiO2复合材料对304不锈钢的光生阴极保护性能
 2
 Cl-对高氮不锈钢在0.5 mol/L NaOH溶液中腐蚀行为的影响
 2
 C和Si含量对车轮钢腐蚀行为的影响
 2
 DNA-Fe配合物生物聚合离子膜修饰玻碳电极的制备及其用作过氧化氢电化学传感器的研究
 2
 Fe-19Cr-15Mn-0.66N高氮钢在空气和0.5 mol/L NaCl溶液中的腐蚀磨损行为
 2
 Fe-Me(Me=Co,Ni,Co-Ni)合金化层表面钝化膜的电化学行为
 2
 H2S环境中硫酸盐还原菌对碳钢点蚀行为的影响
 2
 L360MCS钢在普光气田凝析水中的腐蚀行为
 2
 LY12铝合金阳极氧化膜沸水封孔工艺条件的优化
 2
 pH和Cl-对Cu-Cr-Zr合金电化学腐蚀的影响
 2
 Q235碳钢在红壤中的腐蚀行为
 2
 QAl10-4-4、QAl9-4和ZCuAl10Fe3铜合金在模拟海洋环境中的腐蚀行为
 2
 TWIP钢在NaCl溶液中的腐蚀行为
 2
 X80钢在河南伊川境内土壤模拟溶液中的阴极保护电位
 2
 X90钢热影响区在酸性介质中的电化学腐蚀行为
 2
 X射线荧光光谱法分析液体样品中微量元素的预富集方法
 2
 X射线荧光光谱法在标准中的应用
 2