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Original Articles

High-Performance Liquid Chromatographic Determination of Hydrogen Peroxide with Peroxyoxalate Chemiluminescence Detection

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Pages 2111-2126 | Received 29 Jun 1993, Accepted 31 Oct 1993, Published online: 17 Feb 2007

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Marta Borràs-Brull, Pascal Blondeau & Jordi Riu. (2021) The Use of Conducting Polymers for Enhanced Electrochemical Determination of Hydrogen Peroxide. Critical Reviews in Analytical Chemistry 51:3, pages 204-217.
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Hatice Yildiz, Erol Akyilmaz & Erhan Dinçkaya. (2004) Catalase Immobilization in Cellulose Acetate Beads and Determination of its Hydrogen Peroxide Decomposition Level by using a Catalase Biosensor. Artificial Cells, Blood Substitutes, and Biotechnology 32:3, pages 443-452.
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Jinbao Wei, Zhiyong Tang, Yali Liu, Li Xie & Lin Zhang. (1997) Single sweep polarographic determination of trace levels of hydrogen peroxide. Toxicological & Environmental Chemistry 59:1-4, pages 101-110.
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György Orosz, RichardS. Givens & RichardL. Schowen. (1996) A Model for Mechanism of Peroxyoxalate Chemiluminescence as Applied to Detection in Liquid Chromatography. Critical Reviews in Analytical Chemistry 26:1, pages 1-27.
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Articles from other publishers (33)

Abdul Khaliq, Ruqia Nazir, Muslim Khan, Abdur Rahim, Muhammad Asad, Mohibullah Shah, Mansoor Khan, Riaz Ullah, Essam A. Ali, Ajmir Khan & Umar Nishan. (2023) Co-Doped CeO2/Activated C Nanocomposite Functionalized with Ionic Liquid for Colorimetric Biosensing of H2O2 via Peroxidase Mimicking. Molecules 28:8, pages 3325.
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Meng-Zhu Zhang, Li-Wei Jhang & Shug-June Hwang. 2022. Proceedings of the 38th International MATADOR Conference. Proceedings of the 38th International MATADOR Conference 671 677 .
Umar Nishan, Shams Ul Haq, Abdur Rahim, Muhammad Asad, Amir Badshah, Azhar-ul-Haq Ali Shah, Anwar Iqbal & Nawshad Muhammad. (2021) Ionic-Liquid-Stabilized TiO 2 Nanostructures: A Platform for Detection of Hydrogen Peroxide . ACS Omega 6:48, pages 32754-32762.
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Umar Nishan, Aatif Niaz, Nawshad Muhammad, Muhammad Asad, Azhar-ul-Haq Ali Shah, Naeem Khan, Mansoor Khan, Shaukat Shujah & Abdur Rahim. (2021) Non-enzymatic colorimetric biosensor for hydrogen peroxide using lignin-based silver nanoparticles tuned with ionic liquid as a peroxidase mimic. Arabian Journal of Chemistry 14:6, pages 103164.
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Ricardo Matias Trujillo, Daniela Estefanía Barraza, Martin Lucas Zamora, Anna Cattani-Scholz & Rossana Elena Madrid. (2021) Nanostructures in Hydrogen Peroxide Sensing. Sensors 21:6, pages 2204.
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Yu Zhong, Meng-Meng Liu, Yao Chen, Yuan-Jie Yang, Li-Na Wu, Feng-qiao Bai, Yun Lei, Fei Gao & Ai-Lin Liu. (2020) A high-performance amperometric sensor based on a monodisperse Pt–Au bimetallic nanoporous electrode for determination of hydrogen peroxide released from living cells. Microchimica Acta 187:9.
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Ali Saad Elewi, Shatha Abdul Wadood Al-Shammaree & Abdul Kareem M.A. AL Sammarraie. (2020) Hydrogen peroxide biosensor based on hemoglobin-modified gold nanoparticles–screen printed carbon electrode. Sensing and Bio-Sensing Research 28, pages 100340.
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Jiaqi Yu, Mengya Cao, Hao Wang & Yongxin Li. (2019) Novel manganese(II)-based metal-organic gels: synthesis, characterization and application to chemiluminescent sensing of hydrogen peroxide and glucose. Microchimica Acta 186:11.
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Vinay Narwal, Ritu Deswal & C.S. Pundir. (2018) Fabrication of an electrochemical H 2 O 2 biosensor based on immobilization of hemoglobin nanoparticles onto pencil graphite electrode. Process Biochemistry 71, pages 61-68.
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Faiza Zarif, Sajid Rauf, Muhammad Zahid Qureshi, Noor Samad Shah, Akhtar Hayat, Nawshad Muhammad, Abdur Rahim, Mian Hasnain Nawaz & Muhammad Nasir. (2018) Ionic liquid coated iron nanoparticles are promising peroxidase mimics for optical determination of H2O2. Microchimica Acta 185:6.
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Vinay Narwal, Neelam Yadav, Manisha Thakur & Chandra S. Pundir. (2017) An amperometric H2O2 biosensor based on hemoglobin nanoparticles immobilized on to a gold electrode. Bioscience Reports 37:4.
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Charlton van der Horst, Bongiwe Silwana, Emmanuel Iwuoha & Vernon Somerset. (2017) Electrocatalytic Evaluation of a Horseradish Peroxidase Biosensor Based on a Novel Bi-Ag Bimetallic Nanocomposite. Procedia Technology 27, pages 179-182.
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Lidia Magerusan, Florina Pogacean, Crina Socaci, Maria Coros, Marcela-Corina Rosu & Stela Pruneanu. (2016) Charge transfer-resistance in nitrogen-doped/undoped graphene: Its influence on the electro-catalytic reduction of H 2 O 2. Electrochimica Acta 220, pages 664-671.
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E. D. Pershina, K. A. Kazdobin, A. A. Poliichuk & V. V. Kokhanenko. (2016) Electrochemical methods of hydrogen peroxide control in aqueous media under dynamic conditions. Journal of Water Chemistry and Technology 38:2, pages 71-76.
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Chen Jia, Jie Tang, Shengguo Lu, Yuwang Han & He Huang. (2015) Enhanced Sensitivity for Hydrogen Peroxide Detection: Polydiacetylene Vesicles with Phenylboronic Acid Head Group. Journal of Fluorescence 26:1, pages 121-127.
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Gunther Fischer. 2015. 1 75 .
Bakhadir Rismetov, Tribidasari A. Ivandini, Endang Saepudin & Yasuaki Einaga. (2014) Electrochemical detection of hydrogen peroxide at platinum-modified diamond electrodes for an application in melamine strip tests. Diamond and Related Materials 48, pages 88-95.
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Kiomars Zargoosh, Mojtaba Shamsipur, Morteza Hosseini, Claudia Caltagirone & Vito Lippolis. (2012) The fast peroxyoxalate-chemiluminescence of 3-1-aza-4,10-dithia-7-oxacyclododecane as a novel fluorophore. Journal of Luminescence 132:8, pages 2126-2129.
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Kiomars Zargoosh, Mohammad javad Chaichi, Mojtaba Shamsipur, Saman Hossienkhani, Sakineh Asghari & Mohammad Qandalee. (2012) Highly sensitive glucose biosensor based on the effective immobilization of glucose oxidase/carbon-nanotube and gold nanoparticle in nafion film and peroxyoxalate chemiluminescence reaction of a new fluorophore. Talanta 93, pages 37-43.
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Kiomars Zargoosh, Mojtaba Shamsipur, Mohammad Qandalee, Mohammad Piltan & Loghman Moradi. (2011) Sensitive and selective determination of glucose in human serum and urine based on the peroxyoxalate chemiluminescence reaction of a new Fluorophore. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 81:1, pages 679-683.
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Hai Yan Du, Wei Da Xu, Wei Zhou & Jia Yue Sun. (2010) Effect of Deputy Group Metal Ions on the Fluorescent Properties of the CPPO-H<sub>2</sub>O<sub>2</sub>-Rhodamine B System. Materials Science Forum 663-665, pages 527-531.
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Mojtaba Shamsipur, Kiomars Zargoosh, Mohammad Javad Chaichi, Mahmood Tajbakhsh & Ali Parach. (2010) Peroxyoxalate-chemiluminescence of Tinopal CBS as a commercially important optical brightener: Mechanistic study and quantification. Journal of Luminescence 130:5, pages 748-755.
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Mojtaba Shamsipur, Kiomars Zargoosh, Seyed Morteza Hosseini, Claudia Caltagirone & Vito Lippolis. (2009) Quenching effect of some heavy metal ions on the fast peroxyoxalate-chemiluminescence of 1-(dansylamidopropyl)-1-aza-4,7,10-trithiacyclododecane as a novel fluorophore. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 74:1, pages 205-209.
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Mitsuhiro WADA. (2008) Sensitive Determination of Reactive Oxygen Species by Chemiluminescence Methods and Their Application to Biological Samples and Health Foods活性酸素種の高感度化学発光計測と生体成分分析及び健康食品評価への展開. YAKUGAKU ZASSHI 128:7, pages 1031-1036.
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Sameh Ahmed, Naoya Kishikawa, Kenichiro Nakashima & Naotaka Kuroda. (2007) Determination of vitamin K homologues by high-performance liquid chromatography with on-line photoreactor and peroxyoxalate chemiluminescence detection. Analytica Chimica Acta 591:2, pages 148-154.
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Makoto Tsunoda & Kazuhiro Imai. (2005) Analytical applications of peroxyoxalate chemiluminescence. Analytica Chimica Acta 541:1-2, pages 13-23.
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Kenichiro Nakashima. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
Mitsuhiro Wada, Keiyu Inoue, Ayuko Ihara, Naoya Kishikawa, Kenichiro Nakashima & Naotaka Kuroda. (2003) Determination of organic peroxides by liquid chromatography with on-line post-column ultraviolet irradiation and peroxyoxalate chemiluminescence detection. Journal of Chromatography A 987:1-2, pages 189-195.
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Kazuhiro IMAI. (2003) Analytical Chemical Studies on High-Performance Recognition and Detection of Bio-molecules in Life. YAKUGAKU ZASSHI 123:11, pages 901-917.
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Mitsuhiro Wada, Naotaka Kuroda, Shuzo Akiyama & Kenichiro Nakashima. (1997) A Sensitive and Rapid FIA with an Immobilized Enzyme Column Reactor and Peroxyoxalate Chemiluminescence Detection for the Determination of Total d-Amino Acids in Human Plasma. Analytical Sciences 13:6, pages 945-950.
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Mitsuhiro Wada, Naotaka Kuroda, Toshihiko Ikenaga, Shuzo Akiyama & Kenichiro Nakashima. (1996) Peroxyoxalate Chemiluminescence Determination of Polyamines Using On-Line Combination of High-Performance Liquid Chromatography and an Immobilized Enzyme Column Reactor. Analytical Sciences 12:5, pages 807-810.
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Mitsuhiro Wada, Kenichiro Nakashima, Naotaka Kuroda, Shuzo Akiyama & Kazuhiro Imai. (1996) Sensitive flow-injection method with peroxyoxalate chemiluminescence detection combined with preparative high-performance liquid chromatography for determination of choline-containing phospholipids in human serum. Journal of Chromatography B: Biomedical Sciences and Applications 678:2, pages 129-136.
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Shuzo Akiyama, Kunihiko Tajima, Shin’ichi Nakatsuji, Kenichiro Nakashima, Kazuko Abiru & Miwa Watanabe. (1995) Direct C≡C Triple Bond Formation from the C=C Double Bond and Direct Hydroxylation into the o -Position of a Nitro Group on the Benzene Nucleus with Potassium t -Butoxide in N , N -Dimethylformamide in the Air . Bulletin of the Chemical Society of Japan 68:7, pages 2043-2051.
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