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Original Articles

Chiral recognition of magneto-electropolymerized polyaniline film electrodes

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Pages 342-345 | Received 26 Dec 2005, Accepted 19 Jan 2006, Published online: 22 May 2006

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Noriyuki Hirota, Tsutomu Ando, Ryo Tanaka, Hitoshi Wada & Yoshio Sakka. (2009) Control of lattice spacing in a triangular lattice of feeble magnetic particles formed by induced magnetic dipole interactions. Science and Technology of Advanced Materials 10:1.
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Iwao Mogi & Kazuo Watanabe. (2008) Chirality of magneto-electrodeposited metal film electrodes. Science and Technology of Advanced Materials 9:2.
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Articles from other publishers (12)

Jiao Zou, Guo-Qing Zhao, Guo-Ling Zhao & Jin-Gang Yu. (2022) Fast and sensitive recognition of enantiomers by electrochemical chiral analysis: Recent advances and future perspectives. Coordination Chemistry Reviews 471, pages 214732.
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Matteo Atzori, Cyrille Train, Elizabeth A. Hillard, Narcis Avarvari & Geert L. J. A. Rikken. (2021) Magneto‐chiral anisotropy: From fundamentals to perspectives. Chirality 33:12, pages 844-857.
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Chinami Kaneda, Yuka Sueyasu, Eisaku Tanaka & Mahito Atobe. (2020) Electrochemical synthesis of microporous polyaniline films using foam templates prepared by ultrasonication. Ultrasonics Sonochemistry 64, pages 104991.
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Harshita Pandey, Prateek Khare, Shiv Singh & Sheelendra Pratap Singh. (2020) Carbon nanomaterials integrated molecularly imprinted polymers for biological sample analysis: A critical review. Materials Chemistry and Physics 239, pages 121966.
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Serena Arnaboldi, Sara Grecchi, Mirko Magni & Patrizia Mussini. (2018) Electroactive chiral oligo- and polymer layers for electrochemical enantiorecognition. Current Opinion in Electrochemistry 7, pages 188-199.
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Serena Arnaboldi, Tiziana Benincori, Roberto Cirilli, Sara Grecchi, Laura Santagostini, Francesco Sannicolò & Patrizia R. Mussini. (2016) “Inherently chiral” thiophene-based electrodes at work: a screening of enantioselection ability toward a series of pharmaceutically relevant phenolic or catecholic amino acids, amino esters, and amine. Analytical and Bioanalytical Chemistry 408:26, pages 7243-7254.
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Indu Pandey & Shashank Shekhar Jha. (2015) Molecularly imprinted polyaniline-ferrocene-sulfonic acid-Carbon dots modified pencil graphite electrodes for chiral selective sensing of D-Ascorbic acid and L-Ascorbic acid: A clinical biomarker for preeclampsia. Electrochimica Acta 182, pages 917-928.
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Mahito Atobe, Nobuhito Yoshida, Ken Sakamoto, Kazuyoshi Sugino & Toshio Fuchigami. (2013) Preparation of highly aligned arrays of conducting polymer nanowires using templated electropolymerization in supercritical fluids. Electrochimica Acta 87, pages 409-415.
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Zhang Feng, Ma Li, Yang Yan, Tang Jihai, Li Xiao & Li Wanglin. (2012) Novel Electrochemical Method for the Characterization of the Degree of Chirality in Chiral Polyaniline. Chirality 25:1, pages 39-42.
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G. L. J. A. Rikken. 2011. Comprehensive Chiroptical Spectroscopy. Comprehensive Chiroptical Spectroscopy 433 455 .
Juan Zhou, Qiao Chen, Yonghua Wang, Qian Han & Yingzi Fu. (2011) Stereospecific redox reaction of ascorbic acid and isoascorbic acid based on chiral electropolymerized films. Analytical Methods 3:12, pages 2740.
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Xiliang Luo, Gloria Domínguez Vidal, Anthony J. Killard, Aoife Morrin & Malcolm R. Smyth. (2007) Nanocauliflowers: A Nanostructured Polyaniline-Modified Screen-Printed Electrode with a Self-Assembled Polystyrene Template and Its Application in an Amperometric Enzyme Biosensor. Electroanalysis 19:7-8, pages 876-883.
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