Preparation of ultra-sensitive and selective hydrogen peroxide-based colorimetric sensor using highly exfoliated g-C
Chronic diseases
Diabetes mellitus
Peroxidase-like catalyst
TMB
Journal
Mikrochimica acta
ISSN: 1436-5073
Titre abrégé: Mikrochim Acta
Pays: Austria
ID NLM: 7808782
Informations de publication
Date de publication:
29 Oct 2024
29 Oct 2024
Historique:
received:
15
08
2024
accepted:
14
10
2024
medline:
29
10
2024
pubmed:
29
10
2024
entrez:
29
10
2024
Statut:
epublish
Résumé
A highly sensitive, portable, rapid, and accurate colorimetric sensing method is presented. It is based upon exfoliated g-C
Identifiants
pubmed: 39467865
doi: 10.1007/s00604-024-06777-4
pii: 10.1007/s00604-024-06777-4
doi:
Substances chimiques
Hydrogen Peroxide
BBX060AN9V
Benzidines
0
graphitic carbon nitride
0
Nitrogen Compounds
0
Nitriles
0
3,3',5,5'-tetramethylbenzidine
3B3T5CB8EO
Peroxidase
EC 1.11.1.7
Graphite
7782-42-5
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
706Informations de copyright
© 2024. The Author(s), under exclusive licence to Springer-Verlag GmbH Austria, part of Springer Nature.
Références
Cao W, Ju P, Wang Z, Zhang Y, Zhai X, Jiang F, Sun C (2020) Colorimetric detection of H
pubmed: 32470815
doi: 10.1016/j.saa.2020.118499
Mirzaei Y, Gholami A, Sheini A, Bordbar MM (2023) An origami-based colorimetric sensor for detection of hydrogen peroxide and glucose using sericin capped silver nanoparticles. Sci Rep 13(1):7064
pubmed: 37127668
pmcid: 10151347
doi: 10.1038/s41598-023-34299-1
Hu Z, Dai Z, Hu X, Chen K, Gao C, Zheng X, Yu Y (2019) Synthesis of PB@FePt hybrid nanoparticles with peroxidase-mimicking activity for colorimetric determination of hydrogen peroxide in living cells. Anal Methods 11(5):677–683
doi: 10.1039/C8AY02567C
Li X, Sun L, Yang X, Zhou K, Zhang G, Tong Z, Wang C, Sha J (2019) Enhancing the colorimetric detection of H
pubmed: 30976770
doi: 10.1039/C9AN00163H
Miao B, Arsalan M, BaQais A, Murugadoss V, Saddique I, Amin MA, Ren J, Awais A, Zhu Q, Xu BB (2023) Highly efficient tetrametallic PtNiCuCo alloy nanoparticles for sensitive detection of hydrogen peroxide. Adv Compos Hybrid Mater 6(3):110
doi: 10.1007/s42114-023-00676-7
Li J, Li Y, Gao Z (2023) Polydopamine-based colorimetric superwettable biosensor for highly sensitive detection of hydrogen peroxide and glucose. J Anal Test 7(2):118–127
doi: 10.1007/s41664-023-00252-4
Zhao H, Jiang G, Weng J, Ma Q, Zhang H, Ito Y, Liu M (2016) A signal-accumulating DNAzyme-crosslinked hydrogel for colorimetric sensing of hydrogen peroxide. J Mater Chem B 4(27):4648–4651
pubmed: 32263235
doi: 10.1039/C6TB00825A
Yang H, Yang R, Zhang P, Qin Y, Chen T, Ye F (2017) A bimetallic (Co/2Fe) metal-organic framework with oxidase and peroxidase mimicking activity for colorimetric detection of hydrogen peroxide. Microchim Acta 184:4629–4635
doi: 10.1007/s00604-017-2509-4
Alruwais RS, Adeosun WA (2024) Electrochemical detection of hydrogen peroxide using copper-based metal–organic frameworks: nanoarchitectonics and sensing performance. J Inorg Organomet Polym Mater 34(1):14–37
doi: 10.1007/s10904-023-02787-6
Li G, Zheng Y, Hu G, Chen B, Gu Y, Yang J, Yang H, Hu F, Li C, Guo C (2023) Boosting photo-electro-Fenton process via atomically dispersed iron sites on graphdiyne for invitro hydrogen peroxide detection. Small 19(33):2301540
doi: 10.1002/smll.202301540
Kakeshpour T, Bax A (2022) Simultaneous quantification of H
pubmed: 35394743
pmcid: 9022074
doi: 10.1021/acs.analchem.2c00264
Sun X, Guo S, Liu Y, Sun S (2012) Dumbbell-like PtPd–Fe
pubmed: 22924986
doi: 10.1021/nl302358e
Tantawi O, Baalbaki A, El Asmar R, Ghauch A (2019) A rapid and economical method for the quantification of hydrogen peroxide (H
pubmed: 30445316
doi: 10.1016/j.scitotenv.2018.10.372
Ding Y, Yang B, Liu H, Liu Z, Zhang X, Zheng X, Liu Q (2018) FePt-Au ternary metallic nanoparticles with the enhanced peroxidase-like activity for ultrafast colorimetric detection of H
doi: 10.1016/j.snb.2017.12.115
Yang W, Wu Y, Tao H, Zhao J, Chen H, Qiu S (2017) Ultrasensitive and selective colorimetric detection of acetamiprid pesticide based on the enhanced peroxidase-like activity of gold nanoparticles. Anal Methods 9(37):5484–5493
doi: 10.1039/C7AY01451A
Wu R, Sun M, Liu X, Qin F, Zhang X, Qian Z, Huang J, Li Y, Tan T, Chen W (2022) Oxidase-like ZnCoFe three-atom nanozyme as a colorimetric platform for ascorbic acid sensing. Anal Chem 94(41):14308–14316
pubmed: 36194751
doi: 10.1021/acs.analchem.2c02853
Ullah M, Tasleem S, Ullah S, Panhwar WA, Ashraf M, Ullah R, Gul H, Mahmood N, Rehman AU, Alsaiari NS (2024) Highly selective and sensitive colorimetric detection of nitrite in drinking water by acetic acid-capped hierarchical flower-like NiO nanosheets structure. Transit Met Chem 1–12
Xi X, Wang J, Wang Y, Xiong H, Chen M, Wu Z, Zhang X, Wang S, Wen W (2022) Preparation of Au/Pt/Ti3C
doi: 10.1016/j.carbon.2022.06.068
Bian B, Liu Q, Yu S (2019) Peroxidase mimetic activity of porphyrin modified ZnFe
pubmed: 31195312
doi: 10.1016/j.colsurfb.2019.06.008
Song C, Ding W, Zhao W, Liu H, Wang J, Yao Y, Yao C (2020) High peroxidase-like activity realized by facile synthesis of FeS
pubmed: 31999589
doi: 10.1016/j.bios.2019.111983
Liu Q, Zhu R, Du H, Li H, Yang Y, Jia Q, Bian B (2014) Higher catalytic activity of porphyrin functionalized Co
doi: 10.1016/j.msec.2014.07.032
Tyagi D, Wang H, Huang W, Hu L, Tang Y, Guo Z, Ouyang Z, Zhang H (2020) Recent advances in two-dimensional-material-based sensing technology toward health and environmental monitoring applications. Nanoscale 12(6):3535–3559
pubmed: 32003390
doi: 10.1039/C9NR10178K
Shu Y, Xu J, Chen J, Xu Q, Xiao X, Jin D, Pang H, Hu X (2017) Ultrasensitive electrochemical detection of H
doi: 10.1016/j.snb.2017.05.124
Wei Z, Hai Z, Akbari MK, Qi D, Xing K, Zhao Q, Verpoort F, Hu J, Hyde L, Zhuiykov S (2018) Atomic layer deposition-developed two-dimensional α-MoO
doi: 10.1016/j.snb.2018.01.243
Zhang R, Chen W (2017) Recent advances in graphene-based nanomaterials for fabricating electrochemical hydrogen peroxide sensors. Biosens Bioelectron 89:249–268
pubmed: 26852831
doi: 10.1016/j.bios.2016.01.080
Zou J, Yu Y, Qiao K, Wu S, Yan W, Cheng S, Jiang N, Wang J (2020) Microwave synthesis of phosphorus-doped graphitic carbon nitride nanosheets with enhanced electrochemiluminescence signals. J Mater Sci 55:13618–13633
doi: 10.1007/s10853-020-04862-6
Xu H, Wu Z, Wang Y, Lin C (2017) Enhanced visible-light photocatalytic activity from graphene-like boron nitride anchored on graphitic carbon nitride sheets. J Mater Sci 52(16):9477–9490
doi: 10.1007/s10853-017-1167-6
Pareek S, Quamara JK (2018) Dielectric and optical properties of graphitic carbon nitride–titanium dioxide nanocomposite with enhanced charge seperation. J Mater Sci 53:604–612
doi: 10.1007/s10853-017-1506-7
Barrio J, Shalom M (2018) Rational design of carbon nitride materials by supramolecular preorganization of monomers. ChemCatChem 10(24):5573–5586
doi: 10.1002/cctc.201801410
Ullah M, Lv H, Liu Z, Bai X, Chen J, Zhang Y, Wang J, Sun B, Li L, Shi K (2021) Rational fabrication of a g-C
doi: 10.1016/j.apsusc.2021.149368
She X, Xu H, Xu Y, Yan J, Xia J, Xu L, Song Y, Jiang Y, Zhang Q, Li H (2014) Exfoliated graphene-like carbon nitride in organic solvents: enhanced photocatalytic activity and highly selective and sensitive sensor for the detection of trace amounts of Cu
doi: 10.1039/c3ta13768f
Ma Y, Liu E, Hu X, Tang C, Wan J, Li J, Fan J (2015) A simple process to prepare few-layer g-C
doi: 10.1016/j.apsusc.2015.08.174
Peng G, Qin J, Volokh M, Liu C, Shalom M (2019) Graphene oxide in carbon nitride: from easily processed precursors to a composite material with enhanced photoelectrochemical activity and long-term stability. J Mater Chem A 7(19):11718–11723
doi: 10.1039/C9TA02880C
Zhou Z, Shen Y, Li Y, Liu A, Liu S, Zhang Y (2015) Chemical cleavage of layered carbon nitride with enhanced photoluminescent performances and photoconduction. ACS Nano 9(12):12480–12487
pubmed: 26502265
doi: 10.1021/acsnano.5b05924
Lin T, Zhong L, Wang J, Guo L, Wu H, Guo Q, Fu F, Chen G (2014) Graphite-like carbon nitrides as peroxidase mimetics and their applications to glucose detection. Biosens Bioelectron 59:89–93
pubmed: 24704762
doi: 10.1016/j.bios.2014.03.023
Lu Q, Deng J, Hou Y, Wang H, Li H, Zhang Y (2015) One-step electrochemical synthesis of ultrathin graphitic carbon nitride nanosheets and their application to the detection of uric acid. Chem Commun 51(61):12251–12253
doi: 10.1039/C5CC04231C
Jiang ZY, Kuang Q, Xie ZX, Zheng LS (2010) Syntheses and properties of micro/nanostructured crystallites with high-energy surfaces. Adv Func Mater 20(21):3634–3645
doi: 10.1002/adfm.201001243
Atacan K, Özacar M (2021) Construction of a non-enzymatic electrochemical sensor based on CuO/g-C
doi: 10.1016/j.matchemphys.2021.124527
Woo S, Kim Y-R, Chung TD, Piao Y, Kim H (2012) Synthesis of a graphene–carbon nanotube composite and its electrochemical sensing of hydrogen peroxide. Electrochim Acta 59:509–514
doi: 10.1016/j.electacta.2011.11.012
Ullah M, Zhengxin L, Tirth V (2024) Highly sensitive and selective colorimetric sensing of nitrite based on largest surface area ZIF-67 nanostructure with enhanced peroxidase catalytic activities. J Mater Sci: Mater Electron 35(24):1633
Huang W, Lin T, Cao Y, Lai X, Peng J, Tu J (2017) Hierarchical NiCo
pubmed: 28124997
pmcid: 5298788
doi: 10.3390/s17010217
Wang Y, Liu L, Ma T, Zhang Y, Huang H (2021) 2D graphitic carbon nitride for energy conversion and storage. Adv Func Mater 31(34):2102540
doi: 10.1002/adfm.202102540
Lin X, Du S, Li C, Li G, Li Y, Chen F, Fang P (2020) Consciously constructing the robust NiS/gC
doi: 10.1007/s10562-020-03118-x
Yuan Y-J, Shen Z, Wu S, Su Y, Pei L, Ji Z, Ding M, Bai W, Chen Y, Yu Z-T (2019) Liquid exfoliation of g-C3N4 nanosheets to construct 2D–2D MoS
doi: 10.1016/j.apcatb.2019.01.043
Wang X, Zhang W, Gong X, Hu X, Yao X (2019) In situ decomposition-thermal polymerization method for the synthesis of Au nanoparticle–decorated gC
doi: 10.1007/s11051-019-4613-3
Qiu P, Chen H, Xu C, Zhou N, Jiang F, Wang X, Fu Y (2015) Fabrication of an exfoliated graphitic carbon nitride as a highly active visible light photocatalyst. J Mater Chem A 3(48):24237–24244
doi: 10.1039/C5TA08406G
Narkbuakaew T, Sujaridworakun P (2020) Synthesis of tri-s-triazine based gC
doi: 10.1007/s11244-020-01375-z
Qi K, Zada A, Yang Y, Chen Q, Khataee A (2020) Design of 2D–2D NiO/gC
doi: 10.1007/s11164-020-04262-0
Zou H, Yan X, Ren J, Wu X, Dai Y, Sha D, Pan J, Liu J (2015) Photocatalytic activity enhancement of modified g-C
doi: 10.1016/j.jmat.2015.10.004
Li H-J, Sun B-W, Sui L, Qian D-J, Chen M (2015) Preparation of water-dispersible porous gC
pubmed: 25523639
doi: 10.1039/C4CP05020G
Kesarla MK, Fuentez-Torres MO, Alcudia-Ramos MA, Ortiz-Chi F, Espinosa-González CG, Aleman M, Torres-Torres JG, Godavarthi S (2019) Synthesis of g-C
Elshafie M, Younis S, Serp P, Gad E (2020) Preparation characterization and non-isothermal decomposition kinetics of different carbon nitride sheets. Egypt J Pet 29(1):21–29
doi: 10.1016/j.ejpe.2019.09.003
Farrokhnia M, Karimi S, Momeni S, Khalililaghab S (2017) Colorimetric sensor assay for detection of hydrogen peroxide using green synthesis of silver chloride nanoparticles: experimental and theoretical evidence. Sens Actuators B: Chem 246:979–987
doi: 10.1016/j.snb.2017.02.066
Ullah M Ullah S, Zhengxin L, Khan M, Nazir R, Qassem TA, Mushtaq H, Hasan DF, Aldossari SA, Mahmood N (2024) Fabrication of highly sensitive and selective nitrite colorimetric sensor based on the enhanced peroxidase mimetic activity of using acetic acid capped zinc oxide nanosheets. J Fluoresc 1–14
Senthamizhan A, Balusamy B, Aytac Z, Uyar T (2016) Ultrasensitive electrospun fluorescent nanofibrous membrane for rapid visual colorimetric detection of H
pubmed: 26637215
doi: 10.1007/s00216-015-9149-5
Peng X, Wan G, Wu L, Zeng M, Lin S, Wang G (2018) Peroxidase-like activity of Au@ TiO
doi: 10.1016/j.snb.2017.10.146
Shen G, Zou G, Li, X (2024) Self-cross-linking synthesis of CuO for dual-mode sensing of hydrogen peroxide. J Mol Struct 138833
Liu S, Tian J, Wang L, Luo Y, Sun X (2012) A general strategy for the production of photoluminescent carbon nitride dots from organic amines and their application as novel peroxidase-like catalysts for colorimetric detection of H
doi: 10.1039/C1RA00709B
Wang Y, Liang X, Lv Y, Li X, Xia Q, Yang D, Yang Y (2024) Colorimetric/SERS dual-mode sensing of glucose based on cascade reaction of peroxidase-like Au@Pt/Fe-DACDs nanozyme. J Mater Sci 1–14
Luo S, Liu F, Gu S, Chen K, Yang G, Gu Y, Cao J, Qu L-L (2022) Nanozyme-mediated signal amplification for ultrasensitive photoelectrochemical sensing of Staphylococcus aureus based on Cu–C
pubmed: 35961120
doi: 10.1016/j.bios.2022.114593
Qiu M, Ren Y, Huang L, Zhu X, Liang T, Li M, Tang D (2023) FeNC nanozyme-based electrochemical immunoassay for sensitive detection of human epidermal growth factor receptor 2. Microchim Acta 190(10):378
doi: 10.1007/s00604-023-05964-z
Dutta AK, Maji SK, Mondal A, Karmakar B, Biswas P, Adhikary B (2012) Iron selenide thin film: peroxidase-like behavior, glucose detection and amperometric sensing of hydrogen peroxide. Sens Actuators B: Chem 173:724–731
doi: 10.1016/j.snb.2012.07.070
Lineweaver H, Burk D (1934) The determination of enzyme dissociation constants. J Am Chem Soc 56(3):658–666
doi: 10.1021/ja01318a036
Zhang G, Yu K, Zhou B, Wang J, Zheng C, Qu L, Chai H, Zhang X (2022) Magnetic zirconium-based Prussian blue analog nanozyme: enhanced peroxidase-mimicking activity and colorimetric sensing of phosphate ion. Microchim Acta 189(6):220
doi: 10.1007/s00604-022-05311-8
Tummala S, Bandi R, Ho Y-P (2022) Synthesis of Cu-doped carbon dot/chitosan film composite as a catalyst for the colorimetric detection of hydrogen peroxide and glucose. Microchim Acta 189(8):284
doi: 10.1007/s00604-022-05386-3
Shehala, Baranwal K, Prabha M, Malviya T, Gaurav A, Singh V (2023) Carboxymethyl cellulose-NiO nanoparticles as peroxidase mimic for sensitive colorimetric detection of hydrogen peroxide. Chem Pap 77(3):1299–1316
doi: 10.1007/s11696-022-02401-y
Yadav PK, Singh VK, Chandra S, Bano D, Kumar V, Talat M, Hasan SH (2018) Green synthesis of fluorescent carbon quantum dots from azadirachta indica leaves and their peroxidase-mimetic activity for the detection of H
doi: 10.1021/acsbiomaterials.8b01528
Wang X, Qu K, Xu B, Ren J, Qu X (2011) Multicolor luminescent carbon nanoparticles: synthesis, supramolecular assembly with porphyrin, intrinsic peroxidase-like catalytic activity and applications. Nano Res 4:908–920
doi: 10.1007/s12274-011-0147-4
Chai D-F, Ma Z, Yan H, Qiu Y, Liu H, Guo H-D, Gao G-G (2015) Synergistic effect of sandwich polyoxometalates and copper–imidazole complexes for enhancing the peroxidase-like activity. RSC Adv 5(96):78771–78779
doi: 10.1039/C5RA13265G
Ali S, Sikdar S, Basak S, Mondal M, Tudu A, Roy D, Haydar MS, Ghosh S, Rahaman H, Sil S (2024) Multienzyme mimicking cascade Mn
Mohammad A, Zamzami MA (2023) Construction of carbon cloth modified-Al
doi: 10.1016/j.diamond.2022.109600
Ullah M, Ganesan S, Kumari B, Zafar M, Yusuf K, Hussein SA, Issa SK, Alsultany FH, Singh M, Zhengxin L (2024) A novel ZIF-67@g-C