Determination of pesticides in vegetable samples using an acetylcholinesterase biosensor based on nanoparticles ZrO2/chitosan composite film
暂无分享,去创建一个
Guo-Li Shen | Ru-Qin Yu | Minghui Yang | G. Shen | R. Yu | Minghui Yang | Yunhui Yang | Yunhui Yang | Zhijie Wang | Meng-Meng Guo | Meng-meng Guo | Zhijie Wang
[1] Arben Merkoçi,et al. Pesticide determination in tap water and juice samples using disposable amperometric biosensors made using thick-film technology , 2001 .
[2] Miss A.O. Penney. (b) , 1974, The New Yale Book of Quotations.
[3] M D Luque de Castro,et al. Enzyme inhibition-based biosensors and biosensing systems: questionable analytical devices. , 2003, Biosensors & bioelectronics.
[4] H. Kubinyi,et al. Medicinal Chemistry , 1963, Nature.
[5] Vasif Hasirci,et al. Determination of binary pesticide mixtures by an acetylcholinesterase-choline oxidase biosensor. , 2004, Biosensors & bioelectronics.
[6] Jan Halámek,et al. New principle of direct real-time monitoring of the interaction of cholinesterase and its inhibitors by piezolectric biosensor. , 2003, Biosensors & bioelectronics.
[7] U. Brinkman,et al. Automated on-line gel permeation chromatography-gas chromatography for the determination of organophosphorus pesticides in olive oil. , 1996, Journal of chromatography. A.
[8] D Barceló,et al. Determination of organophosphorus pesticides and their transformation products in river waters by automated on-line solid-phase extraction followed by thermospray liquid chromatography-mass spectrometry. , 1995, Journal of chromatography. A.
[9] A. Balinova. Multiresidue determination of pesticides in plants by high-performance liquid chromatography following gel permeation chromatographic clean-up. , 1998, Journal of chromatography. A.
[10] A L Ghindilis,et al. Potentiometric biosensors for cholinesterase inhibitor analysis based on mediatorless bioelectrocatalysis. , 1996, Biosensors & bioelectronics.
[11] J. Anzai,et al. Selective permeation of hydrogen peroxide through polyelectrolyte multilayer films and its use for amperometric biosensors. , 2001, Analytical chemistry.
[12] H. Budnikov,et al. Influence of surface-active compounds on the response and sensitivity of cholinesterase biosensors for inhibitor determination. , 1996, The Analyst.
[13] Félix Pariente,et al. Determination of Organophosphorus and Carbamate Pesticides Using a Piezoelectric Biosensor , 1998 .
[14] Félix Pariente,et al. Amperometric flow-through biosensor for the determination of pesticides , 1995 .
[15] James R. Durrant,et al. Immobilisation and bioelectrochemistry of proteins on nanoporous TiO2 and ZnO films , 2001 .
[16] Guo-Li Shen,et al. Amperometric glucose biosensor based on a surface treated nanoporous ZrO2/Chitosan composite film as immobilization matrix , 2004 .
[17] Rolf D. Schmid,et al. A disposable multielectrode biosensor for rapid simultaneous detection of the insecticides paraoxon and carbofuran at high resolution , 1999 .
[18] Gennady Evtugyn,et al. Sensitivity and selectivity of electrochemical enzyme sensors for inhibitor determination. , 1998, Talanta.
[19] M. Mascini,et al. Comparative Studies of Immobilized Enzyme Electrodes Based on the Inhibitory Effect of Nicotine on Choline Oxidase and Acetylcholinesterase , 1992 .
[20] Salvador Alegret,et al. Amperometric determination of pesticides using a biosensor based on a polishable graphie-epoxy biocomposite , 1994 .
[21] Petr Skládal,et al. Detection of organophosphate and carbamate pesticides using disposable biosensors based on chemically modified electrodes and immobilized cholinesterase , 1992 .
[22] M. Mascini,et al. Determination of anticholinesterase pesticides in real samples using a disposable biosensor , 1997 .