Detection of uric acid based on multi-walled carbon nanotubes polymerized with a layer of molecularly imprinted PMAA
暂无分享,去创建一个
Kuo-Chuan Ho | Po-Yen Chen | Po-Chin Nien | Chih-Wei Hu | K. Ho | Chih‐Wei Hu | Po-Yen Chen | Po-Chin Nien | Chih-Wei Hu
[1] K. Ho,et al. Enhancing dopamine detection using a glassy carbon electrode modified with MWCNTs, quercetin, and Nafion. , 2009, Biosensors & bioelectronics.
[2] K. Ho,et al. On the amperometric detection and electrocatalytic analysis of ascorbic acid and dopamine using a poly(acriflavine)-modified electrode , 2009 .
[3] G. P. González,et al. Determination of digoxin in serum samples using a flow-through fluorosensor based on a molecularly imprinted polymer. , 2008, Biosensors & bioelectronics.
[4] Xianwen Kan,et al. Composites of Multiwalled Carbon Nanotubes and Molecularly Imprinted Polymers for Dopamine Recognition , 2008 .
[5] B. Kim,et al. Molecularly imprinted polymers immobilized on carbon nanotube , 2008 .
[6] M vandeVen,et al. A MIP-based impedimetric sensor for the detection of low-MW molecules. , 2008, Biosensors & bioelectronics.
[7] Junfa Yin,et al. Molecularly imprinted solid-phase extraction for rapid screening of mycophenolic acid in human plasma. , 2006, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[8] Sergiy Minko,et al. Ultrathin molecularly imprinted polymer sensors employing enhanced transmission surface plasmon resonance spectroscopy. , 2006, Chemical communications.
[9] Peter A. Lieberzeit,et al. Artificial Antibodies for Bioanalyte Detection—Sensing Viruses and Proteins , 2006 .
[10] Börje Sellergren,et al. Molecularly imprinted polymers: a bridge to advanced drug delivery. , 2005, Advanced drug delivery reviews.
[11] B. Ebarvia,et al. Piezoelectric quartz sensor for caffeine based on molecularly imprinted polymethacrylic acid , 2005 .
[12] K. Ho,et al. Amperometric morphine sensing using a molecularly imprinted polymer-modified electrode , 2005 .
[13] K. Ho,et al. Amperometric detection of morphine based on poly(3,4-ethylenedioxythiophene) immobilized molecularly imprinted polymer particles prepared by precipitation polymerization , 2005 .
[14] M. Titirici,et al. Synthesis and evaluation of new propazine-imprinted polymer formats for use as stationary phases in liquid chromatography , 2005 .
[15] Noriaki Hara,et al. SPR sensor chip for detection of small molecules using molecularly imprinted polymer with embedded gold nanoparticles. , 2005, Analytical chemistry.
[16] L. Nie,et al. Preparation of the molecularly imprinted polymers-based capacitive sensor specific for tegafur and its characterization by electrochemical impedance and piezoelectric quartz crystal microbalance , 2004 .
[17] Jyh-Myng Zen,et al. Recent Updates of Chemically Modified Electrodes in Analytical Chemistry , 2003 .
[18] R. Holze,et al. Carbon anode materials for lithium ion batteries , 2003 .
[19] Shengshui Hu,et al. Simultaneous electrochemical determination of xanthine and uric acid at a nanoparticle film electrode , 2003, Analytical and bioanalytical chemistry.
[20] Qiangfeng Xiao,et al. The study of multiwalled carbon nanotube deposited with conducting polymer for supercapacitor , 2003 .
[21] S. Khoo,et al. Studies of sol-gel ceramic film incorporating methylene blue on glassy carbon: an electrocatalytic system for the simultaneous determination of ascorbic and uric acids. , 2002, Analytical chemistry.
[22] Ji Liang,et al. DETERMINATION OF TRACE XANTHINE BY ANODIC STRIPPING VOLTAMMETRY WITH CARBON NANOTUBE MODIFIED GLASSY CARBON ELECTRODE , 2002 .
[23] K. Shiu,et al. Determination of Uric Acid at Electrochemically Activated Glassy Carbon Electrode , 2001 .
[24] B. Sellergren,et al. Analysis of nicotine and its oxidation products in nicotine chewing gum by a molecularly imprinted solid-phase extraction. , 1998, Analytical chemistry.
[25] R. Mashelkar,et al. Pendent chain linked delivery systems: II. Facile hydrolysis through molecular imprinting effects , 1997 .
[26] Klaus Mosbach,et al. Competitive amperometric morphine sensor based on an agarose immobilised molecularly imprinted polymer , 1995 .
[27] Klaus Mosbach,et al. Direct resolution of naproxen on a non-covalently molecularly imprinted chiral stationary phase , 1994 .
[28] K. Kalcher,et al. An improved voltammetric method for the determination of trace amounts of uric acid with electrochemically pretreated carbon paste electrodes. , 1994, Talanta.
[29] T. Sagawa,et al. Homogeneous and heterogeneous esterolytic catalyses of imidazole-containing polymers prepared by molecular imprinting of a transition state analogue , 1994 .
[30] H. Mottola,et al. Determination of uric acid at the microgram level by a kinetic procedure based on a "pseudo-induction" period. , 1974, Analytical chemistry.
[31] Arturo J. Miranda-Ordieres,et al. Electrochemical sensors based on molecularly imprinted polymers , 2004 .
[32] G. Wulff,et al. Enzyme-like catalysis by molecularly imprinted polymers. , 2002, Chemical reviews.
[33] A. Griesmacher,et al. Purine and Pyrimidine Metabolism in Man IX , 1998, Advances in Experimental Medicine and Biology.
[34] H. Yamanaka,et al. Optimal range of serum urate concentrations to minimize risk of gouty attacks during anti-hyperuricemic treatment. , 1998, Advances in experimental medicine and biology.
[35] V. Owen. Sweden — Competitive amperometric morphine sensor based on an agarose immobilized molecularly imprinted polymer , 1995 .
[36] K Mosbach,et al. Enantiomeric resolution on molecularly imprinted polymers prepared with only non-covalent and non-ionic interactions. , 1990, Journal of chromatography.
[37] K. Mosbach,et al. Improved chromatography: prearranged distances between boronate groups by the molecular imprinting approach , 1987 .