石墨烯基电化学生物传感器检测环境中过氧化氢的研究进展

秦瑜1,2, 李泽晖1, 王亚玲1, 王东滨1, 蒋靖坤1,3*

化工新型材料 ›› 2019, Vol. 47 ›› Issue (1) : 1 -5.

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化工新型材料 ›› 2019, Vol. 47 ›› Issue (1) : 1-5.
综述与专论

石墨烯基电化学生物传感器检测环境中过氧化氢的研究进展

    秦瑜1,2, 李泽晖1, 王亚玲1, 王东滨1, 蒋靖坤1,3*
作者信息 +

Research on graphene based electrochemistry biosensor for detection of hydrogen peroxide in environment

  • Qin Yu1,2, Li Zehui1, Wang Yaling1, Wang Dongbin1, Jiang Jingkun1,3
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文章历史 +
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摘要

石墨烯由于其优良的化学、电子、结构和生物兼容等特性,近年来在传感领域得到广泛应用。过氧化氢是活性氧类物质的一种,在大气环境、水环境中广泛存在,由于其具有强氧化性,被广泛用于工业、环境和医疗等领域,且影响人体健康。主要介绍了基于石墨烯复合材料构建的电化学生物传感器对环境中过氧化氢的检测。

Abstract

Recently,graphene material has been widely used as various sensors due to its excellent properties in chemistry,electricity,structure and biocompatibility.Hydrogen peroxide is one kind of reactive oxygen species,and ubiquitous in air and water environment.Because of its strong oxidation,it is widely used in industry,environment,medical treatment and other fields.Previous researches have indicated that oxidative stress caused by hydrogen peroxide had a profound impact on human health.The electrochemical biosensors based on graphene composite materials were reported for hydrogen peroxide detection.

关键词

石墨烯 / 电化学 / 生物传感器 / 过氧化氢

Key words

graphene / electrochemistry / biosensor / hydrogen peroxide

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石墨烯基电化学生物传感器检测环境中过氧化氢的研究进展[J]. 化工新型材料, 2019, 47(1): 1-5 DOI:

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参考文献

[1] Gligorovski S,Strekowski R,Barbati S,et al.Environmental implications of hydroxyl radicals(·OH)[J].Chemical Reviews,2015,115(24):13051-13092.
[2] Anglada J M,Martinscosta M,Francisco J S,et al.Interconnection of reactive oxygen species chemistry across the interfaces of atmospheric,environmental,and biological processes[J].Accounts of Chemical Research,2015,48(3):575-583.
[3] Nogueira R F P,Oliveira M C,Paterlini W C.Simple and fast spectrophotometric determination of H2O2 in photo-Fenton reactions using metavanadate[J].Talanta,2005,66(1):86-91.
[4] Mukhopadhyay R,Meeting news:51st annual meeting of the biophysical society[J].Analytical Chemistry,2007,79(11):3958-3958.
[5] Margeson J H,Knoll J E,Midgett M R,et al.A manual method for measurement of reduced sulfur compounds[J].Journal of the Air Pollution Control Association,1985,35(12):1280-1285.
[6] Sun X,Guo S,Liu Y,et al.Dumbbell-like PtPd-Fe3O4 nanoparticles for enhanced electrochemical detection of H2O2[J].Nano Letters,2012,12(9):4859-4863.
[7] Yang J,Pang F,Zhang R,et al.Electrochemistry and electrocatalysis of hemoglobin on 1-pyrenebutanoic acid succinimidyl ester/multiwalled carbon nanotube and Au nanoparticle modified electrode[J].Electroanalysis,2008,20(19):2134-2140.
[8] Zhang M,Wang Z.Nanostructured silver nanowires-graphene hybrids for enhanced electrochemical detection of hydrogen peroxide[J].Applied Physics Letters,2013,102(21):1057.
[9] Li J,Yang J,Yang Z J,et al.Electrochemically reduced graphene oxide film modified electrode for detection of hydrogen peroxide[J].Key Engineering Materials,2013,538:165-168.
[10] Xi F,Zhao D,Wang X,et al.Non-enzymatic detection of hydrogen peroxide using a functionalized three-dimensional graphene electrode[J].Electrochemistry Communications,2013,26(1):81-84.
[11] Zhang P,Zhang X,Zhang S,et al.One-pot green synthesis,characterizations,and biosensor application of self-assembled reduced graphene oxide-gold nanoparticle hybrid membranes[J].Journal of Materials Chemistry B,2013,1(47):6525-6531.
[12] Tajabadi M T,BasirunW J,Lorestani F,et al.Nitrogen-doped graphene-silver nanodendrites for the non-enzymatic detection of hydrogen peroxide[J].Electrochimica Acta,2015,151(1):126-133.
[13] Xu F,Sun Y,Zhang Y,et al.Graphene-Pt nanocomposite for nonenzymatic detection of hydrogen peroxide with enhanced sensitivity[J].Electrochemistry Communications,2011,13(10):1131-1134.
[14] Liu W,Li C,Zhang P,et al.Hierarchical polystyrene@reduced graphene oxide-Pt core-shell microspheres for non-enzymatic detection of hydrogen peroxide[J].RSC Advances,2015,5(90):73993-74002.
[15] Wang J,Sun H B,Pan H Y,et al.Detection of hydrogen peroxide at a palladium nanoparticle-bilayer graphene hybrid-modified electrode[J].Sensors & Actuators B Chemical,2016,230:690-696.
[16] Liu M,Ru L,and Wei C.Graphene wrapped Cu2O nanocubes:non-enzymatic electrochemical sensors for the detection of glucose and hydrogen peroxide with enhanced stability[J].Biosensors & Bioelectronics,2013,45:206-212.
[17] Palanisamy S,Chen S M,Sarawathi R.A novel nonenzymatic hydrogen peroxide sensor based on reduced graphene oxide/ZnO composite modified electrode[J].Sensors & Actuators B Chemical,2012,166-167(10):372-377.
[18] Zhang C,Li L,Ju J,et al.Electrochemical sensor based on graphene-supported tin oxide nanoclusters for nonenzymatic detection of hydrogen peroxide[J].Electrochimica Acta,2016,210:181-189.
[19] Karuppiah C,Palanisamy S,Chen S M,et al.A novel enzymatic glucose biosensor and sensitive non-enzymatic hydrogen peroxide sensor based on graphene and cobalt oxide nanoparticles composite modified glassy carbon electrode[J].Sensors & Actuators B Chemical,2014,196(2):450-456.
[20] Zhang X,Li K,Li H,et al.Hydrothermal synthesis of cobalt oxide porous nanoribbons anchored with reduced graphene oxide for hydrogen peroxide detection[J].Journal of Nanoparticle Research,2016,18(8):1-12.
[21] Feng X,Zhang Y,Song J,et al.MnO2/graphene nanocomposites for nonenzymatic electrochemical detection of hydrogen peroxide[J].Electroanalysis,2015,27(2):353-359.
[22] Wang H,Bu Y,Dai W,et al.Well-dispersed cobalt phthalocyanine nanorods on graphene for the electrochemical detection of hydrogen peroxide and glucose sensing[J].Sensors & Actuators B Chemical,2015,216:298-306.
[23] Zhang R,Chen W.Fe3C-functionalized 3D nitrogen-doped carbon structures for electrochemical detection of hydrogen peroxide[J].Science Bulletin,2015,60(5):522-531.
[24] Yang M,Kim D S,Lee T J,et al.Polyoxometalate-grafted graphene nanohybrid for electrochemical detection of hydrogen peroxide and glucose[J].Journal of Colloid & Interface Science,2016,468(15):51-56.
[25] Wang Q,Yang Y,Feng G,et al.Graphene oxide directed one-step synthesis of flowerlike graphene@HKUST-1 for enzyme-free detection of hydrogen peroxide in biological samples[J].ACS Applied Materials & Interfaces,2016,8(47):32477-32487.
[26] Cao X,Zeng Z,Shi W,et al.Three-dimensional graphene network composites for detection of hydrogen peroxide[J].Small,2013,9(9-10):1703-1707.
[27] Woo S,Kim Y R,Chung T D,et al.Synthesis of a graphene-carbon nanotube composite and its electrochemical sensing of hydrogen peroxide[J].Electrochimica Acta,2012,59(1):509-514.
[28] Bai Z,Li G,Liang J,et al.Non-enzymatic electrochemical biosensor based on Pt NPs/RGO-CS-Fc nano-hybrids for the detection of hydrogen peroxide in living cells[J].Biosensors & Bioelectronics,2016,82(15):185-194.
[29] Jia N,Huang B,Chen L,et al.A simple non-enzymatic hydrogen peroxide sensor using gold nanoparticles-graphene-chitosan modified electrode[J].Sensors & Actuators B Chemical,2014,195(5):165-170.

基金资助

国家自然科学基金重点项目(91643201);国家自然科学基金青年基金(21707076);清华大学“清峰”奖学金(THQF2018-16)

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